40 results on '"Electric-Dipole Moment"'
Search Results
2. The very large n2EDM magnetically shielded room with an exceptional performance for fundamental physics measurements
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Ayres, N. J., Ban, G., Bison, G., Bodek, K., Bondar, V., Bouillaud, T., Clement, B., Chanel, E., Chiu, P.-J., Crawford, C. B., Daum, M., Doorenbos, C. B., Emmenegger, S., Fratangelo, A., Fertl, M., Griffith, W. C., Grujic, Z. D., Harris, P. G., Kirch, K., Krempel, J., Lauss, B., Lefort, T., Naviliat-Cuncic, O., Pais, D., Piegsa, F. M., Pignol, G., Rauscher, G., Rebreyend, D., Rienäcker, I., Ries, D., Roccia, S., Rozpedzik, D., Saenz-Arevalo, W., Schmidt-Wellenburg, P., Schnabel, A., Severijns, N., Shen, B., Staab, M., Svirina, K., Dinani, R. Tavakoli, Thorne, J., Yazdandoost, N., Zejma, J., and Zsigmond, G. more...
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ELECTRIC-DIPOLE MOMENT ,Technology ,Science & Technology ,DESIGN ,530 Physics ,Physics ,SEARCH ,Physical Sciences ,Instrumentation ,Instruments & Instrumentation ,Physics, Applied - Abstract
We present the magnetically shielded room (MSR) for the n2EDM experiment at the Paul Scherrer Institute, which features an interior cubic volume with each side of length 2.92 m, thus providing an accessible space of 25 m3. The MSR has 87 openings of diameter up to 220 mm for operating the experimental apparatus inside and an intermediate space between the layers for housing sensitive signal processing electronics. The characterization measurements show a remanent magnetic field in the central 1 m3 below 100 pT and a field below 600 pT in the entire inner volume, up to 4 cm to the walls. The quasi-static shielding factor at 0.01 Hz measured with a sinusoidal 2 μT peak-to-peak signal is about 100 000 in all three spatial directions and increases rapidly with frequency to reach 108 above 1 Hz., Review of Scientific Instruments, 93 (9), ISSN:0034-6748, ISSN:1089-7623 more...
- Published
- 2022
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Catalog
3. Non-derivative axionic couplings to nucleons at large and small N
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Matti Järvinen, Francesco Bigazzi, Elias Kiritsis, Aldo L. Cotrone, AstroParticule et Cosmologie (APC (UMR_7164)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Observatoire de Paris, Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS)-Université Paris Cité (UPCité), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS)-Université de Paris (UP), Observatoire de Paris, PSL Research University (PSL)-PSL Research University (PSL)-Université Paris Diderot - Paris 7 (UPD7)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Helsinki Institute of Physics, Department of Physics, Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Observatoire de Paris, and PSL Research University (PSL)-PSL Research University (PSL)-Université Paris Diderot - Paris 7 (UPD7) more...
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High Energy Physics - Theory ,Instanton ,eta(958) ,High Energy Physics::Lattice ,Nuclear Theory ,1/N expansion ,01 natural sciences ,High Energy Physics - Phenomenology (hep-ph) ,effective field theory ,DEPENDENCE ,Effective field theory ,Nuclear Experiment ,BARYONS ,Quantum chromodynamics ,Physics ,[PHYS.HTHE]Physics [physics]/High Energy Physics - Theory [hep-th] ,effective Lagrangian ,High Energy Physics - Lattice (hep-lat) ,Yukawa potential ,Cosmology of Theories beyond the SM ,3. Good health ,High Energy Physics - Phenomenology ,CP ,THETA-TERM ,Nucleon ,Phenomenology (particle physics) ,Nuclear and High Energy Physics ,Particle physics ,FOS: Physical sciences ,1/N Expansion ,STRONG-CP PROBLEM ,meson ,LIMIT ,INSTANTONS ,114 Physical sciences ,Skyrme model ,Gauge-gravity correspondence ,quantum chromodynamics: holography ,ELECTRIC-DIPOLE MOMENT ,High Energy Physics - Lattice ,nucleon: coupling ,0103 physical sciences ,lcsh:Nuclear and particle physics. Atomic energy. Radioactivity ,axion: coupling ,010306 general physics ,Axion ,flavor ,010308 nuclear & particles physics ,[PHYS.HLAT]Physics [physics]/High Energy Physics - Lattice [hep-lat] ,High Energy Physics::Phenomenology ,Goldstone particle ,High Energy Physics - Theory (hep-th) ,[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,Chiral Lagrangians ,STATIC PROPERTIES ,lcsh:QC770-798 ,NEUTRON ,coupling: Yukawa - Abstract
Among the possible CP-odd couplings of the axion to ordinary matter, the most relevant ones for phenomenology are the Yukawa couplings to nucleons. We analyze such non-derivative couplings within three different approaches: standard effective field theory, the Skyrme model and holographic QCD. In all the cases, the couplings can be related to the CP-odd non-derivative couplings to nucleons of the low-lying mesons and the $\eta'$. Using the effective field theory approach we discuss how to derive the expressions for the CP-odd interaction terms as functions of the parameters of the effective Lagrangian at generic number of colors $N_c$ and flavors $N_f$. Then, we compute the CP-odd couplings to nucleons of the axion, the $\eta'$ and the pseudo-Goldstone mesons in both the Skyrme and the holographic QCD model with $N_f=2,3$. We present model-independent expressions for the coefficients of the non-derivative axion-nucleon couplings. This allows us to provide quantitative estimates of these couplings., Comment: v1: 45 pages + appendices, 1 figure; v2: typos corrected, references added; v3: 38 pages + appendices, 1 figure, section 4 added containing model-independent IR relations for the couplings, sections 3,5,6 re-edited, table 1 added and discussion section improved, review material moved to the appendices, comments and references added, typos corrected more...
- Published
- 2020
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4. A search for neutron to mirror-neutron oscillations using the nEDM apparatus at PSI
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Georg Bison, T. Lefort, I. Rienäcker, J. Thorne, Zoran D. Grujić, Prajwal Mohanmurthy, J. Krempel, A. Kozela, Philipp Schmidt-Wellenburg, Nathal Severijns, Florian M. Piegsa, Klaus Kirch, Jacek Zejma, D. Ries, C. Abel, Bernhard Lauss, M. Daum, W. C. Griffith, Nora Hild, Oscar Naviliat-Cuncic, P.-J. Chiu, P. A. Koss, V. Bondar, P. Flaux, L. Ferraris-Bouchez, D. Rozpedzik, Geza Zsigmond, A. Leredde, N. J. Ayres, S. Roccia, M. Rawlik, Christopher Crawford, Kazimierz Bodek, E. Chanel, Reza Tavakoli Dinani, H. C. Koch, Antoine Weis, G. Ban, Guillaume Pignol, D. Rebreyend, E. Wursten, D. Pais, S. Emmenegger, Laboratoire de physique corpusculaire de Caen (LPCC), Université de Caen Normandie (UNICAEN), Normandie Université (NU)-Normandie Université (NU)-École Nationale Supérieure d'Ingénieurs de Caen (ENSICAEN), Normandie Université (NU)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Laboratoire de Physique Subatomique et de Cosmologie (LPSC), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)-Université Grenoble Alpes (UGA)-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP ), Université Grenoble Alpes (UGA), Institut Laue-Langevin (ILL), ILL, and nEDM more...
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Nuclear and High Energy Physics ,Neutron electric dipole moment ,media_common.quotation_subject ,magnetic field ,Weak interaction ,[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex] ,Astronomy & Astrophysics ,01 natural sciences ,7. Clean energy ,Asymmetry ,rotation ,Physics, Particles & Fields ,ELECTRIC-DIPOLE MOMENT ,weak interaction ,0103 physical sciences ,Dark matter ,DARK-MATTER ,Neutron ,010306 general physics ,numerical calculations ,mirror ,Nuclear matter ,media_common ,oscillation: time ,Physics ,n: electric moment ,Properties of neutrons Ultracold neutrons Nuclear matter Mirror matter Dark matter Particle symmetries ,Science & Technology ,Properties of neutrons ,Particle symmetries ,010308 nuclear & particles physics ,parity: symmetry ,[PHYS.PHYS.PHYS-GEN-PH]Physics [physics]/Physics [physics]/General Physics [physics.gen-ph] ,lcsh:QC1-999 ,Mirror matter ,Magnetic field ,MODEL ,Physics, Nuclear ,[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,Physical Sciences ,Ultracold neutrons ,Atomic physics ,asymmetry ,lcsh:Physics - Abstract
It has been proposed that there could be a mirror copy of the standard model particles, restoring the parity symmetry in the weak interaction on the global level. Oscillations between a neutral standard model particle, such as the neutron, and its mirror counterpart could potentially answer various standing issues in physics today. Astrophysical studies and terrestrial experiments led by ultracold neutron storage measurements have investigated neutron to mirror-neutron oscillations and imposed constraints on the theoretical parameters. Recently, further analysis of these ultracold neutron storage experiments has yielded statistically significant anomalous signals that may be interpreted as neutron to mirror-neutron oscillations, assuming nonzero mirror magnetic fields. The neutron electric dipole moment collaboration performed a dedicated search at the Paul Scherrer Institute and found no evidence of neutron to mirror-neutron oscillations. Thereby, the following new lower limits on the oscillation time were obtained: τnn′>352 s at B′=0 (95% C.L.), τnn′>6s for 0.4μT9s for 5.0μT more...
- Published
- 2021
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5. Laser cooling of molecules
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M. R. Tarbutt, Engineering & Physical Science Research Council (E, and Engineering and Physical Sciences Research Council
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Vibrational energy ,Atomic Physics (physics.atom-ph) ,Fluids & Plasmas ,Physics, Multidisciplinary ,General Physics and Astronomy ,FOS: Physical sciences ,01 natural sciences ,LIMIT ,010305 fluids & plasmas ,Physics - Atomic Physics ,FRONTIERS ,laser cooling ,ELECTRIC-DIPOLE MOMENT ,ATOMS ,Laser cooling ,0103 physical sciences ,Cold molecules ,Molecule ,Physics::Atomic Physics ,010306 general physics ,Quantum information science ,01 Mathematical Sciences ,Laser light ,Physics ,Science & Technology ,02 Physical Sciences ,magneto-optical trapping ,Fundamental physics ,Physical Sciences ,Level structure ,Atomic physics - Abstract
Recently, laser cooling methods have been extended from atoms to molecules. The complex rotational and vibrational energy level structure of molecules makes laser cooling difficult, but these difficulties have been overcome and molecules have now been cooled to a few microkelvin and trapped for several seconds. This opens many possibilities for applications in quantum science and technology, controlled chemistry, and tests of fundamental physics. This article explains how molecules can be decelerated, cooled and trapped using laser light, reviews the progress made in recent years, and outlines some future applications., Comment: An entry-level review article prepared for Contemporary Physics more...
- Published
- 2019
6. Prospects for charged Higgs searches at the LHC
- Author
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Farvah Mahmoudi, Katri Huitu, Per Osland, Antonio Racioppi, Oscar Stål, Martti Raidal, mK. Kannike, Kei Yagyu, Tobias Hurth, Rui Santos, Lorenzo Basso, D. Sokolowska, Abdesslam Arhrib, Shinya Kanemura, M. Purmohammadi, Wafaa Khater, Mayumi Aoki, Emine Yildirim, Pankaj Sharma, G. M. Pruna, I.F. Ginzburg, Jaime Hernández-Sánchez, Renato Guedes, Maria Krawczyk, S. Najjari, A. G. Akeroyd, Stefano Moretti, Mario Kadastik, Department of Physics, Helsinki Institute of Physics, Centre de Physique des Particules de Marseille (CPPM), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Aix Marseille Université (AMU), Centre de Recherche Astrophysique de Lyon (CRAL), École normale supérieure - Lyon (ENS Lyon)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National de la Recherche Scientifique (CNRS), Centre de Physique des Particules de Marseille ( CPPM ), Centre National de la Recherche Scientifique ( CNRS ) -Institut National de Physique Nucléaire et de Physique des Particules du CNRS ( IN2P3 ) -Aix Marseille Université ( AMU ), Centre de Recherche Astrophysique de Lyon ( CRAL ), École normale supérieure - Lyon ( ENS Lyon ) -Université Claude Bernard Lyon 1 ( UCBL ), Université de Lyon-Université de Lyon-Institut national des sciences de l'Univers ( INSU - CNRS ) -Centre National de la Recherche Scientifique ( CNRS ), Aix Marseille Université (AMU)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), École normale supérieure de Lyon (ENS de Lyon)-Université Claude Bernard Lyon 1 (UCBL), and Université de Lyon-Université de Lyon-Centre National de la Recherche Scientifique (CNRS)-Institut national des sciences de l'Univers (INSU - CNRS) more...
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Physics and Astronomy (miscellaneous) ,01 natural sciences ,Higgs particle: charged particle: production ,High Energy Physics - Phenomenology (hep-ph) ,BOSON PAIR PRODUCTION ,Boson ,GLUON-GLUON COLLISIONS ,Physics ,Quantum chromodynamics ,quantum chromodynamics: background ,Large Hadron Collider ,new physics: search for ,Electroweak interaction ,QUARK ,Higgs particle: doublet: 2 ,hep-ph ,X-S-GAMMA ,TOP-QUARK ,Higgs particle: charged particle: mass ,High Energy Physics - Phenomenology ,CERN LHC Coll ,2-LOOP QCD CORRECTIONS ,Gluon-Gluon Collisions ,Higgs boson ,Particle physics ,p p: scattering ,Dark matter ,Scalar (mathematics) ,STANDARD MODEL ,FOS: Physical sciences ,lcsh:Astrophysics ,114 Physical sciences ,QUARK MASS-DEPENDENCE ,2-HIGGS DOUBLET MODEL ,Standard Model ,ELECTRIC-DIPOLE MOMENT ,lcsh:QB460-466 ,0103 physical sciences ,lcsh:Nuclear and particle physics. Atomic energy. Radioactivity ,010306 general physics ,Engineering (miscellaneous) ,2-Loop Qcd Corrections ,Particle Physics - Phenomenology ,010308 nuclear & particles physics ,High Energy Physics::Phenomenology ,LARGE HADRON COLLIDER ,Electric-Dipole Moment ,[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,Higgs model ,lcsh:QC770-798 ,[ PHYS.HPHE ] Physics [physics]/High Energy Physics - Phenomenology [hep-ph] - Abstract
The goal of this report is to summarize the current situation and discuss possible search strategies for charged scalars, in non-supersymmetric extensions of the Standard Model at the LHC. Such scalars appear in Multi-Higgs-Doublet models (MHDM), in particular in the popular Two-Higgs-Doublet model (2HDM), allowing for charged and additional neutral Higgs bosons. These models have the attractive property that electroweak precision observables are automatically in agreement with the Standard Model at the tree level. For the most popular version of this framework, Model~II, a discovery of a charged Higgs boson remains challenging, since the parameter space is becoming very constrained, and the QCD background is very high. We also briefly comment on models with dark matter which constrain the corresponding charged scalars that occur in these models. The stakes of a possible discovery of an extended scalar sector are very high, and these searches should be pursued in all conceivable channels, at the LHC and at future colliders., 65 pages, revised version to appear in EPJ C more...
- Published
- 2017
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7. The effective chiral Lagrangian from dimension-six parity and time-reversal violation
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J. de Vries, Robertus Timmermans, U. van Kolck, Emanuele Mereghetti, High-Energy Frontier, Institut de Physique Nucléaire d'Orsay (IPNO), and Université Paris-Sud - Paris 11 (UP11)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS) more...
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Quark ,Particle physics ,High Energy Physics::Lattice ,Nuclear Theory ,STANDARD MODEL ,General Physics and Astronomy ,FOS: Physical sciences ,ISOSPIN VIOLATION ,01 natural sciences ,ELECTRIC-DIPOLE MOMENT ,High Energy Physics - Phenomenology (hep-ph) ,STRONG CP-VIOLATION ,0103 physical sciences ,NUCLEAR-FORCES ,010306 general physics ,Nuclear Experiment ,Physics ,FORM-FACTOR ,QUANTUM CHROMODYNAMICS ,010308 nuclear & particles physics ,Electric dipole moments ,High Energy Physics::Phenomenology ,Dimension-six operators ,Observable ,Parity (physics) ,Effective dimension ,Time-reversal violation ,Gluon ,EFFECTIVE-FIELD THEORY ,Electric dipole moment ,Dipole ,High Energy Physics - Phenomenology ,CP violation ,Chiral effective field theory ,[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,PERTURBATION-THEORY ,High Energy Physics::Experiment ,NEUTRON ,Nucleon - Abstract
We classify the parity- and time-reversal-violating operators involving quark and gluon fields that have effective dimension six: the quark electric dipole moment, the quark and gluon chromo-electric dipole moments, and four four-quark operators. We construct the effective chiral Lagrangian with hadronic and electromagnetic interactions that originate from them, which serves as the basis for calculations of low-energy observables. The form of the effective interactions depends on the chiral properties of these operators. We develop a power-counting scheme and calculate within this scheme, as an example, the parity- and time-reversal-violating pion-nucleon form factor. We also discuss the electric dipole moments of the nucleon and light nuclei., Comment: Matches published version more...
- Published
- 2013
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8. Search for parity and time reversal violating effects in HgH: Relativistic coupled-cluster study
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Himadri Pathak, Sourav Pal, Malaya K. Nayak, Sudip Sasmal, and Nayana Vaval
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Particle physics ,Atoms ,Atomic Physics (physics.atom-ph) ,Basis-Sets ,General Physics and Astronomy ,Potential candidate ,FOS: Physical sciences ,Neon ,01 natural sciences ,Physics - Atomic Physics ,Physics - Chemical Physics ,Electric field ,0103 physical sciences ,Physical and Theoretical Chemistry ,010306 general physics ,Physics ,Chemical Physics (physics.chem-ph) ,010304 chemical physics ,Tests ,Parity (physics) ,Molecules ,Electron electric dipole moment ,Electric-Dipole Moment ,Coupled cluster ,Unpaired electron ,Analytic Energy Derivatives ,Order ,Atomic physics - Abstract
The high effective electric field ($E_\mathrm{eff}$) experienced by the unpaired electron in an atom or a molecule is one of the key ingredients in the success of electron electric dipole moment (eEDM) experiment and its precise calculation require a very accurate theory. We, therefore, employed the Z-vector method in the relativistic coupled-cluster framework and found that HgH has a very large $E_\mathrm{eff}$ value (123.2 GV/cm) which makes it a potential candidate for the next generation eEDM experiment. Our study also reveals that it has a large scalar-pseudoscalar ${\mathcal{P,T}}$-violating interaction constant, $W_\mathrm{s}$ = 284.2 kHz. To judge the accuracy of the obtained results we have calculated parallel and perpendicular magnetic HFS constants and compared with the available experimental values. The results of our calculation are found to be in nice agreement with the experimental values. Therefore, by looking at the HFS results we can say that both $E_\mathrm{eff}$ and $W_\mathrm{s}$ values are also very accurate. Further, We have derived the relationship between these quantities and the ratio which will help to get model independent value of eEDM and S-PS interaction constant., Comment: main text : 5 pages more...
- Published
- 2016
9. Relativistic coupled-cluster study of RaF as a candidate for parity and time reversal violating interaction
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Malaya K. Nayak, Sourav Pal, Sudip Sasmal, Nayana Vaval, and Himadri Pathak
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Atoms ,Odd ,Atomic Physics (physics.atom-ph) ,FOS: Physical sciences ,Electron ,01 natural sciences ,Physics - Atomic Physics ,Physics - Chemical Physics ,Electric field ,0103 physical sciences ,Hyperfine-Structure ,Ybf Molecule ,010306 general physics ,Hyperfine structure ,Physics ,Chemical Physics (physics.chem-ph) ,Elementary-Particles ,010304 chemical physics ,Enhancement ,Parity (physics) ,Wave-Function ,Electric-Dipole Moment ,Electric dipole moment ,Coupled cluster ,Unpaired electron ,Analytic Energy Derivatives ,Atomic physics ,Ground state ,Radium - Abstract
We have employed both Z-vector method and the expectation value approach in the relativistic coupled-cluster framework to calculate the scalar-pseudoscalar (S-PS) P, T -odd interaction constant (W_s) and the effective electric field (Eeff) experienced by the unpaired electron in the ground electronic state of RaF. Further, the magnetic hyperfine structure constants of ^{223}Ra in RaF and ^{223}Ra+ are also calculated and compared with the experimental values wherever available to judge the extent of accuracy obtained in the employed methods. The outcome of our study reveals that the Z-vector method is superior than the expectation value approach in terms of accuracy obtained for the calculation of ground state property. The Z-vector calculation shows that RaF has a high E_eff (52.5 GV/cm) and W_s (141.2 kHz) which makes it a potential candidate for the eEDM experiment., Comment: 8 pages, 3 figures more...
- Published
- 2016
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10. Time-reversal violation in threshold (n)over-right-arrow(p)over-right-arrow scattering
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ELECTRIC-DIPOLE MOMENT ,POLARIZATION ,PARITY VIOLATION ,NEUTRON-INDUCED REACTIONS ,ASYMMETRY ,TESTS ,NUCLEAR-REACTIONS ,OPTICS ,LIMIT ,T-INVARIANCE - Abstract
We investigate parity and time-reversal violation in neutron-proton scattering in the optical regime. We calculate the neutron spin rotation and analyzing power in scattering on polarized protons. This allows us to quantify the sensitivity that such experiments should aim for in order to be competitive to present-day measurements of the neutron electric dipole moment in constraining the P- and T-odd two-nucleon interaction. While state-of-the-art techniques fall short by some three orders of magnitude for the neutron-proton case, specific neutron-nucleus experiments look promising, provided certain experimental and theoretical challenges are met. more...
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- 2006
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11. Fundamental symmetries and interactions --Some aspects
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Klaus-Peter Jungmann and KVI - Center for Advanced Radiation Technology
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Physics ,Nuclear and High Energy Physics ,Physics beyond the Standard Model ,FOS: Physical sciences ,Fermion ,MASS ,LIMIT ,Domain (software engineering) ,ELECTRIC-DIPOLE MOMENT ,PHYSICS ,Theoretical physics ,Low energy ,FUTURE ,SEARCH ,Homogeneous space ,PARTICLES ,DOUBLE-BETA DECAY ,Standard theory ,Nuclear Experiment (nucl-ex) ,NEUTRINO ,LEPTON ,Nuclear Experiment - Abstract
In the framework of nuclear physics and at nuclear physics facilities a large number of different experiments can be performed which render the possibility to investigate fundamental symmetries and interactions in nature. In particular, the precise measurements of properties of fundamental fermions, searches for new interactions in $\beta$-decays, and violations of discrete symmetries have a robust discovery potential for physics beyond standard theory. Precise measurements of fundamental constants can be carried out as well. Low energy experiments allow probing of New Physics models at mass scales far beyond the reach of present accelerators or such planned for the future in the domain of high energy physics and at which predicted new particles could be produced directly., Comment: Review Talk ENAM'04 more...
- Published
- 2005
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12. Fundamental symmetries and interactions studied with radioactive isotopes in atom traps
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ELECTRIC-DIPOLE MOMENT ,NEUTRON DECAY ,beta-nu correlations ,fundamental symmetries ,Physics::Atomic Physics ,electric dipole moment ,BETA-DECAY ,Nuclear Experiment ,LIMIT - Abstract
The structure of certain nuclei and atoms allow one to study fundamental symmetries and interactions. In this review we consider the search for Time-Reversal invariance Violation (TRV). We consider two options: TRV in beta decay or the search for the forbidden Electric Dipole Moment (EDM). In both cases atomic trapping can be an appropriate tool. For beta decay radioactive isotopes are necessary, but also for EDM searches they appear to be useful. more...
- Published
- 2005
13. A precise measurement of the muon magnetic anomaly
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ELECTRIC-DIPOLE MOMENT ,G-2 EXPERIMENT ,POSITIVE MUON ,CONSTRAINTS ,PARTICLES ,INTERVAL ,CPT ,FIELD ,NMR - Abstract
At the Brookhaven National Laboratory (BNL) a precision experiment of the muon magnetic anomaly a(mu) in a magnetic storage ring is on its way. Measurements carried out on positive muons in 1999 have resulted in a(mu+) = 11,659,202(14)(6) x 10(-10) (1.3 ppm). A difference between this value and the theoretical value at the time of publication has lead to a careful reevaluation of all contributions. At present there are several independent theoretical values which are based on standard theory. They agree with each other and are within one to two standard deviations of the above value. The goal of the experiment is a precision of 0.35 ppm. About eight times more data are being analyzed and additional data taking is foreseen. Eventual agreement with experiment would allow to put stringent limits on parameters in theoretical approaches beyond the standard model. Disagreement could indicate new physics. more...
- Published
- 2003
14. Calculation of P,T-odd interaction constant of PbF using Z-vector method in the relativistic coupled-cluster framework
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Himadri Pathak, Sudip Sasmal, Malaya K. Nayak, Sourav Pal, and Nayana Vaval
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Odd ,Atomic Physics (physics.atom-ph) ,Basis-Sets ,General Physics and Astronomy ,FOS: Physical sciences ,Physics - Atomic Physics ,Core electron ,Physics - Chemical Physics ,Electric field ,Ybf Molecule ,Physics::Atomic Physics ,Physical and Theoretical Chemistry ,Hyperfine structure ,Physics ,Chemical Physics (physics.chem-ph) ,Enhancement ,Search ,Asymmetry ,Electron electric dipole moment ,Electric-Dipole Moment ,Dipole ,Coupled cluster ,Moment (physics) ,Hyperfine ,Atomic physics ,Excitation - Abstract
The effective electric field experienced by the unpaired electron in the ground state of PbF, which is a potential candidate in the search of electron electric dipole moment due to some special characteristics, is calculated using Z-vector method in the coupled cluster single- and double- excitation approximation with four component Dirac spinor. This is an important quantity to set the upper bound limit of the electron electric dipole moment. Further, we have calculated molecular dipole moment and parallel magnetic hyperfine structure constant (A$_\|$) of $^{207}$Pb in PbF to test the accuracy of the wave function obtained in the Z-vector method. The outcome of our calculations clearly suggests that the core electrons have significant contribution to the "atom in compound (AIC)" properties., Comment: 6 pages, 1 figure more...
- Published
- 2015
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15. A device for simultaneous spin analysis of ultracold neutrons
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A. Kozela, Reinhold Henneck, Y. Lemière, S. Roccia, M. Daum, G. Ban, P. Schmidt-Wellenburg, E. Wursten, Y. Kermaidic, G. Quéméner, Klaus Kirch, A. Mtchedlishvili, T. Lefort, Antoine Weis, D. Rebreyend, Malgorzata Kasprzak, Guillaume Pignol, Zoran D. Grujić, L. Hayen, Florian M. Piegsa, Geza Zsigmond, D. Rozpedzik, Oscar Naviliat-Cuncic, Martin Fertl, D. Ries, Jacek Zejma, J. Krempel, M. Rawlik, G. Wyszynski, Natalis Severijns, Bernhard Lauss, P. N. Prashanth, Z. Chowdhuri, S. Komposch, V. Hélaine, B. Franke, P. Geltenbort, Kazimierz Bodek, Georg Bison, S. Afach, Laboratoire de physique corpusculaire de Caen (LPCC), Université de Caen Normandie (UNICAEN), Normandie Université (NU)-Normandie Université (NU)-École Nationale Supérieure d'Ingénieurs de Caen (ENSICAEN), Normandie Université (NU)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Institut Laue-Langevin (ILL), ILL, Laboratoire de Physique Subatomique et de Cosmologie (LPSC), Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP )-Institut Polytechnique de Grenoble - Grenoble Institute of Technology-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Joseph Fourier - Grenoble 1 (UJF)-Centre National de la Recherche Scientifique (CNRS), CSNSM SNO, Centre de Spectrométrie Nucléaire et de Spectrométrie de Masse (CSNSM), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11)-Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11)-Centre de Sciences Nucléaires et de Sciences de la Matière (CSNSM), and Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11) more...
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Nuclear and High Energy Physics ,Physics - Instrumentation and Detectors ,Neutron electric dipole moment ,Analyser ,Hadron ,Statistical sensitivity ,FOS: Physical sciences ,01 natural sciences ,Nuclear physics ,0103 physical sciences ,Nuclear fusion ,electric-dipole moment ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,Physics::Atomic Physics ,Nuclear Experiment (nucl-ex) ,010306 general physics ,Spin (physics) ,Nuclear Experiment ,Physics ,polarization ,010308 nuclear & particles physics ,Detector ,Electric Dipole Moments ,Neutron detection ,Neutron spin analysis ,Instrumentation and Detectors (physics.ins-det) ,2990+r Ultracold neutrons ,Ultracold neutrons ,physics - Abstract
We report on the design and first tests of a device allowing for measurement of ultracold neutrons polarisation by means of the simultaneous analysis of the two spin components. The device was developed in the framework of the neutron electric dipole moment experiment at the Paul Scherrer Institute. Individual parts and the entire newly built system have been characterised with ultracold neutrons. The gain in statistical sensitivity obtained with the simultaneous spin analyser is $(18.2\pm 6.1)$ % relative to the former sequential analyser under nominal running conditions. more...
- Published
- 2015
- Full Text
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16. Trimp - A new facility to investigate fundamental interactions with optically trapped radioactive atoms
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ELECTRIC-DIPOLE MOMENT ,SPECTROSCOPY ,LIMIT - Abstract
At the Kernfysisch Versneller Instituut (KVI) in Groningen, NL, a new facility (TRIμP) is under development. It aims for producing, slowing down and trapping of radioactive isotopes in order to perform accurate measurements on fundamental symmetries and interactions. A spectrum of radioactive nuclids will be produced in direct, inverse kinematics of fragmentation reactions using heavy ion beams from the superconducting AGOR cyclotron. The research programme pursued by the KVI group includes precision studies of nuclear β-decays through β–neutrino (recoil nucleus) momentum correlations in weak decays and searches for permanent electric dipole moments in heavy atomic systems. This offers a large potential for discovering new physics or to limit parameters in models beyond standard theory significantly. The scientific approach chosen in TRIμP can be regarded as complementary to such high energy physics. The facility in Groningen will be open for use by the worldwide community of scientists. more...
- Published
- 2002
17. Viability of minimal left-right models with discrete symmetries
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Daniël Boer, Wouter Dekens, and High-Energy Frontier
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BOSONS ,Particle physics ,Nuclear and High Energy Physics ,COLLISIONS ,BOUNDS ,FOS: Physical sciences ,MASS ,ELECTRIC-DIPOLE MOMENT ,High Energy Physics - Phenomenology (hep-ph) ,lcsh:Nuclear and particle physics. Atomic energy. Radioactivity ,Gauge theory ,SCALE ,Boson ,Physics ,PARITY ,Yukawa potential ,Observable ,Invariant (physics) ,Electric dipole moment ,High Energy Physics - Phenomenology ,Homogeneous space ,Higgs boson ,GAUGE-THEORIES ,lcsh:QC770-798 ,SPONTANEOUS CP VIOLATION ,SU(2)LXSU(2)RXU(1) - Abstract
We provide a systematic study of minimal left-right models that are invariant under $P$, $C$, and/or $CP$ transformations. Due to the high amount of symmetry such models are quite predictive in the amount and pattern of $CP$ violation they can produce or accommodate at lower energies. Using current experimental constraints some of the models can already be excluded. For this purpose we provide an overview of the experimental constraints on the different left-right symmetric models, considering bounds from colliders, meson-mixing and low-energy observables, such as beta decay and electric dipole moments. The features of the various Yukawa and Higgs sectors are discussed in detail. In particular, we give the Higgs potentials for each case, discuss the possible vacua and investigate the amount of fine-tuning present in these potentials. It turns out that all left-right models with $P$, $C$, and/or $CP$ symmetry have a high degree of fine-tuning, unless supplemented with mechanisms to suppress certain parameters. The models that are symmetric under both $P$ and $C$ are not in accordance with present observations, whereas the models with either $P$, $C$, or $CP$ symmetry can not be excluded by data yet. To further constrain and discriminate between the models measurements of $B$-meson observables at LHCb and $B$-factories will be especially important, while measurements of the EDMs of light nuclei in particular could provide complementary tests of the LRMs., Minor modifications, added references, matches published version in Nuclear Physics B more...
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- 2014
18. Higgs mass, superconnections, and the TeV-scale left-right symmetric model
- Author
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Physics, Aydemir, U., Minic, Djordje, Sun, C., Takeuchi, Tatsu, Physics, Aydemir, U., Minic, Djordje, Sun, C., and Takeuchi, Tatsu
- Published
- 2015
19. TRI mu P-trapped radioactive atoms-mu icrolaboratories for fundamental physics
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ELECTRIC-DIPOLE MOMENT ,LIMIT - Abstract
At the Kernfysisch Versneller Instituut (KVI) in Groningen, NL, a new facility (TRImuP) is under development. Radioactive nuclei will be produced using heavy ion beams from the superconducting AGOR cyclotron. They are then slowed down and finally trapped in ion or atomic traps in order to perform precision experiments with them. The facility will be open for use by the worldwide community. The present local research programme includes precision studies of nuclear beta-decays through beta-neutrino (recoil nucleus) momentum correlations in weak decays as well as searches for permanent electric dipole moments in heavy atomic systems. Such experiments offer a large potential for discovering new physics or to put sensitive limits on parameters in models beyond standard theory. more...
- Published
- 2003
20. Light shifts and magic wavelengths for heavy alkaline earth elements
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Lorenz Willmann, B. Santra, U. Dammalapati, and Precision Frontier
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Physics ,Condensed Matter::Quantum Gases ,Alkaline earth metal ,Optical lattice ,VIOLATION ,Infrared ,BARIUM ,TRAPS ,Condensed Matter Physics ,RADIUM ,Atomic and Molecular Physics, and Optics ,STATE ,ELECTRIC-DIPOLE MOMENT ,ATOMS ,PHYSICS ,Dipole ,Electric dipole moment ,ENERGY-LEVELS ,Excited state ,TRANSITION-PROBABILITIES ,Physics::Atomic Physics ,Atomic physics ,Ground state ,Doppler cooling - Abstract
In this paper, we investigate light shifts of heavy alkaline earth elements barium (Ba) and radium (Ra), which are interesting for optical lattice clocks and for permanent electric dipole moment searches. Detailed knowledge is required in the design of efficient loading of atoms from a magneto-optical trap into an optical dipole trap, to facilitate Doppler cooling while trapping and to achieve longer lifetimes of the trapped atoms with reduced heating rates. The wavelength dependence of light shifts of the ns(2) (1)S(0) ground state, the nsnp (3)P(1) and ns(n - 1) d (1)D(2) excited states in barium (n = 6) and the n s(2) (1)S(0) ground state, the nsnp (3)P(1) and ns(n - 1) d (3)D(2) excited states in radium (n = 7) are calculated. Several magic wavelengths in the visible and infrared regions accessible with commercial lasers for optical dipole trapping of Ba and Ra are identified. more...
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- 2012
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21. P and T Violating Form Factors of the Deuteron
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Emanuele Mereghetti, Robertus Timmermans, U. van Kolck, and J. de Vries
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Quantum chromodynamics ,Quark ,Physics ,Particle physics ,Chiral perturbation theory ,QUANTUM CHROMODYNAMICS ,High Energy Physics::Lattice ,Transition dipole moment ,QCD vacuum ,Nuclear Theory ,High Energy Physics::Phenomenology ,General Physics and Astronomy ,Parity (physics) ,EFFECTIVE-FIELD THEORY ,ELECTRIC-DIPOLE MOMENT ,MODEL ,Electric dipole moment ,Dipole ,SYSTEMS ,Quantum electrodynamics ,High Energy Physics::Experiment ,NEUTRON ,LAGRANGIANS ,Nuclear Experiment ,NUCLEON - Abstract
We calculate the electric-dipole and magnetic-quadrupole form factors of the deuteron that arise as a low-energy manifestation of parity and time-reversal violation in quark-gluon interactions. We consider the QCD vacuum angle and the dimension-six operators that originate from physics beyond the standard model: the quark electric and chromoelectric dipole moments and the gluon chromoelectric dipole moment. Within the framework of two-flavor chiral perturbation theory, we show that in combination with the nucleon electric dipole moment, the deuteron moments would allow an identification of the dominant source(s) of symmetry violation. more...
- Published
- 2011
22. Leptonic CP violation
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Gustavo C. Branco, Filipe R. Joaquim, and R. Gonzalez Felipe
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Particle physics ,Quark Mass Matrices ,Neutrino-Oscillation Experiments ,General Physics and Astronomy ,FOS: Physical sciences ,Right-Handed Neutrinos ,01 natural sciences ,Nuclear physics ,Baryon asymmetry ,High Energy Physics - Phenomenology (hep-ph) ,Minimal Flavor Violation ,Seesaw molecular geometry ,Double beta decay ,Triplet Seesaw Mechanism ,0103 physical sciences ,010306 general physics ,Neutrino oscillation ,Long-Base-Line ,Particle Physics - Phenomenology ,Majorana Neutrinos ,Physics ,010308 nuclear & particles physics ,High Energy Physics::Phenomenology ,Electric-Dipole Moment ,High Energy Physics - Phenomenology ,Leptogenesis ,CP violation ,High Energy Physics::Experiment ,Nuclear-Power-Reactor ,Neutrino ,Doubble-Beta-Decay ,Lepton - Abstract
Several topics on CP violation in the lepton sector are reviewed. A few theoretical aspects concerning neutrino masses, leptonic mixing, and CP violation will be covered, with special emphasis on seesaw models. A discussion is provided on observable effects which are manifest in the presence of CP violation, particularly, in neutrino oscillations and neutrinoless double beta decay processes, and their possible implications in collider experiments such as the LHC. The role that leptonic CP violation may have played in the generation of the baryon asymmetry of the Universe through the mechanism of leptogenesis is also discussed., Comment: 58 pages; a few misprints corrected and references added; final version to appear in Reviews of Modern Physics more...
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- 2011
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23. QCD and strongly coupled gauge theories: challenges and perspectives
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Brambilla, N., Eidelman, S., Foka, P., Gardner, S., Kronfeld, A. S., Alford, M. G., Alkofer, R., Butenschoen, M., Cohen, T. D., Erdmenger, J., Fabbietti, L., Faber, M., Goity, J. L., Ketzer, B., Lin, H. W., Llanes Estrada, Felipe José, Meyer, H. B., Pakhlov, P., Pallante, E., Polikarpov, M. I., Sazdjian, H., Schmitt, A., Snow, W. M., Vairo, A., Vogt, R., Vuorinen, A., Wittig, H., Arnold, P., Christakoglou, P., Di Nezza, P., Fodor, Z., Garcia i Tormo, X., Hoellwieser, R., Janik, M. A., Kalweit, A., Keane, D., Kiritsis, E., Mischke, A., Mizuk, R., Odyniec, G., Papadodimas, K., Pich, A., Pittau, R., Qiu, J. W., Ricciardi, G., Salgado, C. A., Schwenzer, K., Stefanis, N. G., von Hippel, G. M., Zakharov, V. I., Brambilla, N., Eidelman, S., Foka, P., Gardner, S., Kronfeld, A. S., Alford, M. G., Alkofer, R., Butenschoen, M., Cohen, T. D., Erdmenger, J., Fabbietti, L., Faber, M., Goity, J. L., Ketzer, B., Lin, H. W., Llanes Estrada, Felipe José, Meyer, H. B., Pakhlov, P., Pallante, E., Polikarpov, M. I., Sazdjian, H., Schmitt, A., Snow, W. M., Vairo, A., Vogt, R., Vuorinen, A., Wittig, H., Arnold, P., Christakoglou, P., Di Nezza, P., Fodor, Z., Garcia i Tormo, X., Hoellwieser, R., Janik, M. A., Kalweit, A., Keane, D., Kiritsis, E., Mischke, A., Mizuk, R., Odyniec, G., Papadodimas, K., Pich, A., Pittau, R., Qiu, J. W., Ricciardi, G., Salgado, C. A., Schwenzer, K., Stefanis, N. G., von Hippel, G. M., and Zakharov, V. I. more...
- Abstract
© The Author(s) 2014. This article is published with open access at Springerlink.com. The authors appreciate and acknowledge support for work on this document provided, in part or in whole, by U.S. Department of Energy, Office of Science, Offices of Nuclear and High-Energy physics, under contracts # DE-FG02-05ER41375 and # DE-FG02-91ER40628 (M. Alford and K. Schwenzer)the EU I3HP project EPOS "Exciting Physics of Strong Interactions" (WP4 of HadronPhysics3) (R. Alkofer)U.S. Department of Energy grant no. DE-SC0007984, (P. Arnold)Deutsche Forschungsgemeinschaft DFG EClust 153 "Origin and Structure of the Universe" (N. Brambilla, L. Fabbietti, B. Ketzer, A. Vairo)Deutsche Forschungsgemeinschaft DFG grants BR 4058/2-1 and BR 4058/1-1; work supported in part by DFG and NSFC (CRC 110) (N. Brambilla, A. Vairo)U.S. Department of Energy (T. Cohen)Istituto Nazionale di Fisica Nucleare (INFN) of Italy (P. Di Nezza)the Ministry of Education and Science of the Russian Federation; the Russian Foundation for Basic Research under grants 12-02-01032 and 12-02-01296 and the German Research Foundation (DFG) under grant HA 1457/9-1. (S. Eidelman)Bundesministerium fur Bildung und Forschung BMBF Grant No. 05P12WOGHH; Helmholtz Young Investigator University Group, VH-NG-330 (L. Fabbietti)Swiss National Science Foundation (SNF) under the Sinergia grant number CRSII2_141847_1 (X. Garcia i Tormo)U.S. Department of Energy Office of Nuclear Physics under contract DE-FG02-96ER40989 (S. Gardner)DOE Contract No. DE-AC05-06OR23177 under which JSA operates the Thomas Jefferson National Accelerator Facility, and by the National Science Foundation through grants PHY-0855789 and PHY-1307413 (J. Goity)Austrian Science Foundation FWF under project No. P20016-N16 (R. Hollwieser)Polish National Science Centre reaserch grant UMO-2012/05/N/ST2/02757 (M. A. Janik)European Union in the framework of European Social Fund through the Warsaw University of Technology Development Programme (M. A. Janik)U.S. Depart, We highlight the progress, current status, and open challenges of QCD-driven physics, in theory and in experiment. We discuss how the strong interaction is intimately connected to a broad sweep of physical problems, in settings ranging from astrophysics and cosmology to strongly coupled, complex systems in particle and condensed-matter physics, as well as to searches for physics beyond the Standard Model. We also discuss how success in describing the strong interaction impacts other fields, and, in turn, how such subjects can impact studies of the strong interaction. In the course of the work we offer a perspective on the many research streams which flow into and out of QCD, as well as a vision for future developments., Unión Europea. FP7, U.S. Department of Energy Office of Nuclear Physics, U.S. Department of Energy, Office of Nuclear Physics, U.S. Department of Energy, Office of Science, Offices of Nuclear and High-Energy physics, Deutsche Forschungsgemeinschaft DFG, Istituto Nazionale di Fisica Nucleare (INFN) of Italy, Ministry of Education and Science of the Russian Federation, Russian Foundation for Basic Research, German Research Foundation (DFG), Bundesministerium fur Bildung und Forschung BMBF, Helmholtz Young Investigator University Group, Swiss National Science Foundation (SNF), National Science Foundation, Austrian Science Foundation FWF, Polish National Science Centre, Dutch Foundation for Fundamental Research, European Commission under the ERC, European Research Council under the European Community/ERC, Netherlands Organisation for Scientific Research, Nuclear Science Division, U.S. Department of Energy by Lawrence Berkeley National Laboratory, Generalitat Valenciana, Spanish Government EU funds, Italian MIUR, European Research Council, Ministerio de Ciencia e Innovacion (MICINN), España, Xunta de Galicia, Indiana University Center for Spacetime Symmetries, U.S. Department of Energy, National Nuclear Security Administration, US DOE JET topical collaboration, Academy of Finland, Depto. de Física Teórica, Fac. de Ciencias Físicas, TRUE, pub more...
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- 2014
24. Physics at a future Neutrino Factory and super-beam facility
- Subjects
LEPTON-FLAVOR VIOLATION ,ELECTRIC-DIPOLE MOMENT ,LARGE EXTRA DIMENSIONS ,DOUBLE-BETA-DECAY ,MUONIUM-ANTIMUONIUM CONVERSION ,LONG-BASE-LINE ,MU-E CONVERSION ,ANOMALOUS MAGNETIC-MOMENT ,WARM DARK-MATTER ,R-PARITY VIOLATION - Abstract
The conclusions of the Physics Working Group of the International Scoping Study of a future Neutrino Factory and super-beam facility (the ISS) are presented. The ISS was carried out by the international community between NuFact05, (the 7th International Workshop on Neutrino Factories and Super-beams, Laboratori Nazionali di Frascati, Rome, 21-26 June 2005) and NuFact06 (Ivine, CA, 24-30 August 2006). The physics case for an extensive experimental programme to understand the properties of the neutrino is presented and the role of high-precision measurements of neutrino oscillations within this programme is discussed in detail. The performance of second-generation super-beam experiments, beta-beam facilities and the Neutrino Factory are evaluated and a quantitative comparison of the discovery potential of the three classes of facility is presented. High-precision studies of the properties of the muon are complementary to the study of neutrino oscillations. The Neutrino Factory has the potential to provide extremely intense muon beams and the physics potential of such beams is discussed in the final section of the report. more...
- Published
- 2009
- Full Text
- View/download PDF
25. Physics at a future Neutrino Factory and super-beam facility
- Author
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Kenneth Long, S. Lola, K. Whisnant, Hitoshi Murayama, Andrea Romanino, Osamu Yasuda, S. Umasankar, Stefan Antusch, Sandhya Choubey, Belen Gavela, Elena Couce, B.L. Roberts, Y. Uchida, N. Kitazawa, B. A. Popov, Cecilia Lunardini, Frank Filthaut, Patrick Huber, A.G. Akeroyd, J.T. Peltoniemi, Andrea Donini, Paul Fraser Harrison, G. Karagiorgi, Marcos Dracos, Stephen F. King, Janet Conrad, Danny Marfatia, Andrea Vacchi, S.T. Petcov, Enrique Fernandez-Martinez, Mariam Tórtola, Yoshitaka Kuno, Julien Lesgourgues, Srubabati Goswami, Davide Meloni, Michael S. Zisman, Y. Nagashima, Hiroshi Nunokawa, W. Fetscher, Pilar Hernández, H. Sugiyama, Mingshui Chen, Carl H. Albright, Gian F. Giudice, N. K. Mondal, Manfred Lindner, P. Chimenti, A. Baldini, Silvia Pascoli, Alexis A. Aguilar-Arevalo, Juha Äystö, Walter Winter, Jacobo Lopez-Pavon, Takashi Matsushita, Mark Rolinec, Paul Langacker, Manuela Campanelli, Kazuhiro Tobe, V. Palladino, Vernon Barger, S. Geer, Klaus-Peter Jungmann, C. Biggio, Lisa L. Everett, Yasaman Farzan, J. Bouchez, Michel Diaz, P. J. Dornan, A. Blondel, M. H. Shaevitz, A. Yu. Smirnov, I. Antoniadis, José W. F. Valle, T. Schwetz, C. Rogers, M. Sorel, John Ellis, M. Mezzetto, Kai Zuber, Y. Okada, J.K. Nelson, J.J. Gómez-Cadenas, Michele Maltoni, A. Bandyopadhyay, Joachim Kopp, Sacha Davidson, Y. Grossman, A. van der Schaaf, Stefano Rigolin, Mayumi Aoki, David William Casper, Alexander Friedland, A. de Gouvea, J.E. Campagne, Raj Gandhi, Bandyopadhyay, A, Choubey, S, Gandhi, R, Goswami, S, Roberts, Bl, Bouchez, J, Antoniadis, I, Ellis, J, Giudice, Gf, Schwetz, T, Umasankar, S, Karagiorgi, G, Aguilar Arevalo, A, Conrad, Jm, Shaevitz, Mh, Pascoli, S, Geer, S, Campagne, Je, Rolinec, M, Blondel, A, Campanelli, M, Kopp, J, Lindner, M, Peltoniemi, J, Dornan, Pj, Long, K, Matsushita, T, Rogers, C, Uchida, Y, Dracos, M, Whisnant, K, Casper, D, Chen, Mc, Popov, B, Aysto, J, Marfatia, D, Okada, Y, Sugiyama, H, Jungmann, K, Lesgourgues, J, Zisman, M, Tortola, Ma, Friedland, A, Davidson, S, Antusch, S, Biggio, C, Donini, A, Fernandez Martinez, E, Gavela, B, Maltoni, M, Lopez Pavon, J, Rigolin, S, Mondal, N, Palladino, V, Filthaut, F, Albright, C, de Gouvea, A, Kuno, Y, Nagashima, Y, Mezzetto, M, Lola, S, Langacker, P, Baldini, A, Nunokawa, H, Meloni, Davide, Diaz, M, King, Sf, Zuber, K, Akeroyd, Ag, Grossman, Y, Farzan, Y, Tobe, K, Aoki, M, Murayama, H, Kitazawa, N, Yasuda, O, Petcov, S, Romanino, A, Chimenti, P, Vacchi, A, Smirnov, Ay, Couce, E, Gomez Cadenas, Jj, Hernandez, P, Sorel, M, Valle, Jwf, Harrison, Pf, Lunardini, C, Nelson, Jk, Barger, V, Everett, L, Huber, P, Winter, W, Fetscher, W, van der Schaaf, A., Blondel, Alain, Campanelli, Mario, Département de Physique des Particules (ex SPP) (DPhP), Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Laboratoire de l'Accélérateur Linéaire (LAL), Université Paris-Sud - Paris 11 (UP11)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Département Recherches Subatomiques (DRS-IPHC), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Louis Pasteur - Strasbourg I-Centre National de la Recherche Scientifique (CNRS), Laboratoire d'Annecy-le-Vieux de Physique Théorique (LAPTH), Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Centre National de la Recherche Scientifique (CNRS), Institut de Physique Nucléaire de Lyon (IPNL), Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Département de Physique des Particules (ex SPP) (DPP), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11), Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), A., Bandyopadhyay, and Palladino, Vittorio more...
- Subjects
[PHYS.ASTR.HE]Physics [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE] ,Particle physics ,Physics::Instrumentation and Detectors ,MUONIUM-ANTIMUONIUM CONVERSION ,FOS: Physical sciences ,General Physics and Astronomy ,ddc:500.2 ,LONG-BASE-LINE ,01 natural sciences ,7. Clean energy ,WARM DARK-MATTER ,Nuclear physics ,LEPTON-FLAVOR VIOLATION ,ELECTRIC-DIPOLE MOMENT ,High Energy Physics - Phenomenology (hep-ph) ,Double beta decay ,0103 physical sciences ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,ANOMALOUS MAGNETIC-MOMENT ,010306 general physics ,Neutrino oscillation ,Neutrino physics ,Neutrino factory ,Particle Physics - Phenomenology ,R-PARITY VIOLATION ,Physics ,Muon ,Anomalous magnetic dipole moment ,010308 nuclear & particles physics ,[SDU.ASTR.HE]Sciences of the Universe [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE] ,LARGE EXTRA DIMENSIONS ,DOUBLE-BETA-DECAY ,Física ,MU-E CONVERSION ,High Energy Physics - Phenomenology ,Experimental High Energy Physics ,Large extra dimension ,CP violation ,Physics::Accelerator Physics ,Neutrino Factory ,High Energy Physics::Experiment ,Neutrino - Abstract
The conclusions of the Physics Working Group of the international scoping study of a future Neutrino Factory and super-beam facility (the ISS) are presented. The ISS was carried by the international community between NuFact05, (the 7th International Workshop on Neutrino Factories and Superbeams, Laboratori Nazionali di Frascati, Rome, June 21-26, 2005) and NuFact06 (Ivine, California, 24{30 August 2006). The physics case for an extensive experimental programme to understand the properties of the neutrino is presented and the role of high-precision measurements of neutrino oscillations within this programme is discussed in detail. The performance of second generation super-beam experiments, beta-beam facilities, and the Neutrino Factory are evaluated and a quantitative comparison of the discovery potential of the three classes of facility is presented. High-precision studies of the properties of the muon are complementary to the study of neutrino oscillations. The Neutrino Factory has the potential to provide extremely intense muon beams and the physics potential of such beams is discussed in the final section of the report., 370 pages, 121 postscript figures more...
- Published
- 2009
- Full Text
- View/download PDF
26. Search for neutral MSSM Higgs bosons at LEP
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Schael, S., Barate, R., Bruneliere, R., Bonis, I. D., Decamp, D., Goy, C., Jezequel, S., Lees, J. P., Martin, F., Merle, E., Minard, M. N., Pietrzyk, B., Trocme, B., Bravo, S., Casado, M. P., Chmeissani, M., Crespo, J. M., Fernandez, E., Fernandez Bosman, M., Garrido, L., Martinez, M., Pacheco, A., Ruiz, H., Colaleo, A., Creanza, D., Filippis, N. D., Palma, M. d., Iaselli, G., Maggi, G., Maggi, M., Nuzzo, S., Ranieri, A., Raso, G., Ruggieri, F., Selvaggi, G., Silvestris, L., Tempesta, P., Tricomi, A., Zito, G., Huang, X., Lin, J., Ouyang, Q., Wang, T., Xie, Y., Xu, R., Xue, S., Zhang, J., Zhang, L., Zhao, W., Abbaneo, D., Barklow, T., Buchmueller, O., Cattaneo, M., Clerbaux, B., Drevermann, H., Forty, R. W., Frank, M., Gianotti, F., Hansen, J. B., Harvey, J., Hutchcroft, D. 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J., Azzurri, P., Bagliesi, G., Boccali, T., Foa, L., Giammanco, A., Giassi, A., Ligabue, F., Messineo, A., Palla, F., Sanguinetti, G., Sciaba, A., Sguazzoni, G., Spagnolo, P., Tenchini, R., Venturi, A., Verdini, P. G., Awunor, O., Blair, G. A., Cowan, G., Garcia Bellido, A., Green, M. G., Medcalf, T., Misiejuk, A., Strong, J. A., Teixeira Dias, P., Clifft, R. W., Edgecock, T. R., Norton, P. R., Tomalin, I. R., Ward, J. J., Bloch Devaux, B., Boumediene, D., Colas, P., Fabbro, B., Lancon, E., Lemaire, M. C., Locci, E., Perez, P., Rander, J., Tuchming, B., Vallage, B., Litke, A. M., Taylor, G., Booth, C. N., Cartwright, S., Combley, F., Hodgson, P. N., Lehto, M., Thompson, L. F., Boehrer, A., Brandt, S., Grupen, C., Hess, J., Ngac, A., Prange, G., Borean, C., Giannini, G., He, H., Putz, J., Rothberg, J., Armstrong, S. R., Berkelman, K., Cranmer, K., D. P. S., Gao, Y., Gonzalez, S., Hayes, O. J., Hu, H., Jin, S., Kile, J., Mcnamara, P. A., Nielsen, J., Pan, Y. B., Von, J. 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R., Yamashita, S., Zer Zion, D., Zivkovic, L., Heinemeyer, S., Pilaftsis, A., Weiglein, G., Collaboration, L., Collaboration, A., Collaboration, D., Collaboration, O., Grp, L. W., Laboratoire d'Annecy de Physique des Particules (LAPP/Laboratoire d'Annecy-le-Vieux de Physique des Particules), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Centre National de la Recherche Scientifique (CNRS), Institut de Physique Nucléaire de Lyon (IPNL), Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Laboratoire de Physique Corpusculaire - Clermont-Ferrand (LPC), Université Blaise Pascal - Clermont-Ferrand 2 (UBP)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Laboratoire de Physique Théorique et Astroparticules (LPTA), Université Montpellier 2 - Sciences et Techniques (UM2)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Laboratoire Leprince-Ringuet (LLR), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-École polytechnique (X)-Centre National de la Recherche Scientifique (CNRS), Laboratoire de l'Accélérateur Linéaire (LAL), Université Paris-Sud - Paris 11 (UP11)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Centre de Physique des Particules de Marseille (CPPM), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Aix Marseille Université (AMU), Département d'Astrophysique, de physique des Particules, de physique Nucléaire et de l'Instrumentation Associée (DAPNIA), Commissariat à l'énergie atomique et aux énergies alternatives (CEA), Laboratoire de Physique Nucléaire et de Hautes Énergies (LPNHE), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS), Laboratoire de Physique Subatomique et de Cosmologie (LPSC), Université Joseph Fourier - Grenoble 1 (UJF)-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Institut Polytechnique de Grenoble - Grenoble Institute of Technology-Centre National de la Recherche Scientifique (CNRS)-Université Grenoble Alpes (UGA), Institut de Recherches Subatomiques (IReS), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Cancéropôle du Grand Est-Université Louis Pasteur - Strasbourg I-Centre National de la Recherche Scientifique (CNRS), ALEPH, DELPHI, L3, OPAL, Laboratoire d'Annecy de Physique des Particules (LAPP), Aix Marseille Université (AMU)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Université Joseph Fourier - Grenoble 1 (UJF)-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP )-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Institut Polytechnique de Grenoble - Grenoble Institute of Technology-Centre National de la Recherche Scientifique (CNRS), Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Centre National de la Recherche Scientifique (CNRS)-École polytechnique (X)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11), Centre National de la Recherche Scientifique (CNRS)-Université Paris Diderot - Paris 7 (UPD7)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Pierre et Marie Curie - Paris 6 (UPMC), Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP )-Institut Polytechnique de Grenoble - Grenoble Institute of Technology-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Joseph Fourier - Grenoble 1 (UJF)-Centre National de la Recherche Scientifique (CNRS), ALEPH Collaboration, DELPHI Collaboration, L3 Collaboration, OPAL Collaboration, S., Schael, Aloisio, Alberto, Alviggi, Mariagrazia, Canale, Vincenzo, Chiefari, Giovanni, DELLA VOLPE, Domenico, Merola, Leonardo, Napolitano, Marco, Patricelli, Sergio, Sciacca, Crisostomo, Giannini, Gianrossano, DELLA RICCA, Giuseppe, Vitale, Lorenzo, Schael, S., Barate, R., Bruneliere, R., De Bonis, I., Decamp, D., Goy, C., Jezequel, S., Lees, J. P., Martin, F., Merle, E., Minard, M. N., Pietrzyk, B., Trocme, B., Bravo, S., Casado, M. P., Chmeissani, M., Crespo, J. M., Fernandez, E., Fernandez Bosman, M., Garrido, L., Martinez, M., Pacheco, A., Ruiz, H., Colaleo, A., Creanza, D., De Filippis, N., de Palma, M., Iaselli, G., Maggi, G., Maggi, M., Nuzzo, S., Ranieri, A., Raso, G., Ruggieri, F., Selvaggi, G., Silvestris, L., Tempesta, P., Tricomi, A., Zito, G., Huang, X., Lin, J., Ouyang, Q., Wang, T., Xie, Y., Xu, R., Xue, S., Zhang, J., Zhang, L., Zhao, W., Abbaneo, D., Barklow, T., Buchmueller, O., Cattaneo, M., Clerbaux, B., Drevermann, H., Forty, R. W., Frank, M., Gianotti, F., Hansen, J. B., Harvey, J., Hutchcroft, D. E., Janot, P., Jost, B., Kado, M., Mato, P., Moutoussi, A., Ranjard, F., Rolandi, Luigi, Schlatter, D., Teubert, F., Valassi, A., Videau, I., Badaud, F., Dessagne, S., Falvard, A., Fayolle, D., Gay, P., Jousset, J., Michel, B., Monteil, S., Pallin, D., Pascolo, J. M., Perret, P., Hansen, J. D., Hansen, J. R., Hansen, P. H., Kraan, A. C., Nilsson, B. S., Kyriakis, A., Markou, C., Simopoulou, E., Vayaki, A., Zachariadou, K., Blondel, A., Brient, J. C., Machefert, F., Rouge, A., Videau, H., Ciulli, V., Focardi, E., Parrini, G., Antonelli, A., Antonelli, M., Bencivenni, G., Bossi, F., Capon, G., Cerutti, F., Chiarella, V., Mannocchi, C., Laurelli, P., Mannocchi, G., Murtas, G. P., Passalacqua, L., Kennedy, J., Lynch, J. G., Negus, P., O'Shea, V., Thompson, A. S., Wasserbaech, S., Cavanaugh, R., Dhamotharan, S., Geweniger, C., Hanke, P., Hepp, V., Kluge, E. E., Putzer, A., Stenzel, H., Tittel, K., Wunsch, M., Beuselinck, R., Cameron, W., Davies, G., Dornan, P. J., Girone, M., Marinelli, N., Nowell, J., Rutherford, S. A., Sedgbeer, J. K., Thompson, J. C., White, R., Chete, V. M., Girtler, P., Kneringer, E., Kuhn, D., Rudolph, G., Bouhova Thacker, E., Bowdery, C. K., Clarke, D. P., Ellis, G., Finch, A. J., Foster, F., Hughes, G., Jones, R. W. L., Pearson, M. R., Robertson, N. A., Smizanska, M., van der Aa, O., Delaere, C., Leibenguth, G., Lemaitre, V., Blumenschein, U., Hoelldorfer, F., Jakobs, K., Kayser, F., Mueller, A. S., Renk, B., Sander, H. G., Schmeling, S., Wachsmuth, H., Zeitnitz, C., Ziegler, T., Bonissent, A., Coyle, P., Curtil, C., Ealet, A., Fouchez, D., Payre, P., Tilquin, A., Ragusa, F., David, A., Dietl, H., Ganis, G., Huettmann, K., Luetjens, G., Maenner, W., Moser, H. G., Settles, R., Villegas, M., Wolf, G., Boucrot, J., Callot, O., Davier, M., Duflot, L., Grivaz, J. F., Heusse, P., Jacholkowska, A., Serin, L., Veillet, J. J., Azzurri, P., Bagliesi, G., Boccali, T., Foa, L., Giammanco, A., Giassi, A., Ligabue, Franco, Messineo, A., Palla, F., Sanguinetti, G., Sciaba, A., Sguazzoni, G., Spagnolo, P., Tenchini, R., Venturi, A., Verdini, P. G., Awunor, O., Blair, G. A., Cowan, G., Garcia Bellido, A., Green, M. G., Medcalf, T., Misiejuk, A., Strong, J. A., Teixeira Dias, P., Clifft, R. W., Edgecock, T. R., Norton, P. R., Tomalin, I. 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J., Crennell, D., Cuevas, J., D'Hondt, J., Dalmau, J., da Silva, T., da Silva, W., Della Ricca, G., De Angelis, A., De Boer, W., De Clercq, C., De Lotto, B., De Maria, N., De Min, A., de Paula, L., Di Ciaccio, L., Di Simone, A., Doroba, K., Drees, J., Eigen, G., Ekelof, T., Ellert, M., Elsing, M., Santo M. C., Espirito, Fanourakis, G., Fassouliotis, D., Feindt, M., Fernandez, J., Ferrer, A., Ferro, F., Flagmeyer, U., Foeth, H., Fokitis, E., Fulda Quenzer, F., Fuster, J., Gandelman, M., Garcia, C., Gavillet, P., Gazis, E., Gokieli, R., Golob, B., Gomez Ceballos, G., Goncalves, P., Graziani, E., Grosdidier, G., Grzelak, K., Guy, J., Haag, C., Hallgren, A., Hamacher, K., Hamilton, K., Haug, S., Hauler, F., Hedberg, V., Hennecke, M., Herr, H., Hoffman, J., Holmgren, S. O., Holt, P. J., Houlden, M. A., Hultqvist, K., Jackson, J. N., Jarlskog, G., Jarry, P., Jeans, D., Johansson, E. K., Johansson, P. D., Jonsson, P., Joram, C., Jungermann, L., Kapusta, F., Katsanevas, S., Katsoufis, E., Kernel, G., Kersevan, B. P., Kerzel, U., King, B. T., Kjaer, N. J., Kluit, P., Kokkinias, P., Kourkoumelis, C., Kouznetsov, O., Krumstein, Z., Kucharczyk, M., Lamsa, J., Leder, G., Ledroit, F., Leinonen, L., Leitner, R., Lemonne, J., Lepeltier, V., Lesiak, T., Liebig, W., Liko, D., Lipniacka, A., Lopes, J. H., Lopez, J. M., Loukas, D., Lutz, P., Lyons, L., Macnaughton, J., Malek, A., Maltezos, S., Mandl, F., Marco, J., Marco, R., Marechal, B., Margoni, M., Marin, J. C., Mariotti, C., Markou, A., Martinez Rivero, C., Masik, J., Mastroyiannopoulos, N., Matorras, F., Matteuzzi, C., Mazzucato, F., Mazzucato, M., Mc Nulty, R., Meroni, C., Migliore, E., Mitaroff, W., Mjoernmark, U., Moa, T., Moch, M., Moenig, K., Monge, R., Montenegro, J., Moraes, D., Moreno, S., Morettini, P., Mueller, U., Muenich, K., Mulders, M., Mundim, L., Murray, W., Muryn, B., Myatt, G., Myklebust, T., Nassiakou, M., Navarria, F., Nawrocki, K., Nicolaidou, R., Nikolenko, M., Oblakowska Mucha, A., Obraztsov, V., Olshevski, A., Onofre, A., Orava, R., Osterberg, K., Ouraou, A., Oyanguren, A., Paganoni, M., Paiano, S., Palacios, J. P., Palka, H., Papadopoulou, T. D., Pape, L., Parkes, C., Parodi, F., Parzefall, U., Passeri, A., Passon, O., Peralta, L., Perepelitsa, V., Perrotta, A., Petrolini, A., Piedra, J., Pieri, L., Pierre, F., Pimenta, M., Piotto, E., Podobnik, T., Poireau, V., Pol, M. 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A., Tyapkin, P., Tzamarias, S., Uvarov, V., Valenti, G., Van Dam, P., Van Eldik, J., van Remortel, N., Van Vulpen, I., Vegni, G., Veloso, F., Venus, W., Verdier, P., Verzi, V., Vilanova, D., Vitale, L., Vrba, V., Wahlen, H., Washbrook, A. J., Weiser, C., Wicke, D., Wickens, J., Wilkinson, G., Winter, M., Witek, M., Yushchenko, O., Zalewska, A., Zalewski, P., Zavrtanik, D., Zhuravlov, V., Zimin, N. I., Zintchenko, A., Zupan, M., Achard, P., Adriani, O., Aguilar Benitez, M., Alcaraz, J., Alemanni, G., Allaby, J., Aloisio, A., Alviggi, M. G., Anderhub, H., Andreev, V. P., Anselmo, F., Arefiev, A., Azemoon, T., Aziz, T., Bagnaia, P., Bajo, A., Baksay, G., Baksay, L., Baldew, S. V., Banerjee, S., Banerjee, S. w., Barczyk, A., Barillere, R., Bartalini, P., Basile, M., Batalova, N., Battiston, R., Bay, A., Becattini, F., Becker, U., Behner, F., Bellucci, L., Berbeco, R., Berdugo, J., Berges, P., Bertucci, B., Betev, B. L., Biasini, M., Biglietti, M., Biland, A., Blaising, J. J., Blyth, S. C., Bobbink, G. J., Boehm, A., Boldizsar, L., Borgia, B., Bottai, S., Bourilkov, D., Bourquin, M., Braccini, S., Branson, J. G., Brochu, F., Burger, J. D., Burger, W. J., Cai, X. D., Capell, M., Romeo G., Cara, Carlino, G., Cartacci, A., Casaus, J., Cavallari, F., Cavallo, N., Cecchi, C., Cerrada, M., Chamizo, M., Chang, Y. H., Chemarin, M., Chen, A., Chen, G., Chen, G. M., Chen, H. F., Chen, H. S., Chiefari, G., Cifarelli, L., Cindolo, F., Clare, I., Clare, R., Coignet, G., Colino, N., Costantini, S., de la Cruz, B., Cucciarelli, S., de Asmundis, R., Deglon, P., Debreczeni, J., Degre, A., Dehmelt, K., Deiters, K., della Volpe, D., Delmeire, E., Denes, P., Denotaristefani, F., De Salvo, A., Diemoz, M., Dierckxsens, M., Dionisi, C., Dittmar, M., Doria, A., Dova, M. T., Duchesneau, D., Duda, M., Echenard, B., Eline, A., El Hage, A., El Mamouni, H., Engler, A., Eppling, F. J., Extermann, P., Falagan, M. 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Sobie, R, Söldner Rembold, S, Spano, F, Stahl, A, Strom, D, Ströhmer, R, Tarem, S, Tasevsky, M, Teuscher, R, Thomson, M, Torrence, E, Toya, D, Tran, P, Trigger, I, Trócsányi, Z, Tsur, E, Turner Watson, M, Ueda, I, Ujvári, B, Vollmer, C, Vannerem, P, Vértesi, R, Verzocchi, M, Voss, H, Vossebeld, J, Ward, C, Ward, D, Watkins, P, Watson, A, Watson, N, Wells, P, Wengler, T, Wermes, N, Wilson, G, Wilson, J, Wyatt, T, Yamashita, S, Zer Zion, D, Zivkovic, L, Heinemeyer, S, Pilaftsis, A, Weiglein, G, Centre National de la Recherche Scientifique (CNRS)-Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), Achard, Pablo, Bourquin, Maurice, Braccini, Saverio, Chamizo Llatas, Maria, Deglon, Patrick, Delmeire, Evelyne, Echenard, Bertrand, Extermann, Pierre, Field, John, Kienzle, Maria-Novella, Natale, Sonia, Pohl, Martin, Straessner, Arno, BioAnalytical Chemistry, Geometry, Student Lab and Education, (Astro)-Particles Physics, Faculty of Sciences, History and Social Aspects of Science, Stochastics, Biophysics Photosynthesis/Energy, Medicinal chemistry, SCHAEL S, BARATE R, BRUNELIE, RE R, DE BONIS I, DECAMP D, GOY C, JE, ZE, QUEL S, LEES J, MARTIN F, MERLE E, MINARD M, PIETRZYK B, TROCME, BRAVO S, CASADO MP, CHMEISSANI M, CRESPO JM, FERNANDEZ E, FERNANDEZ-BOSMAN M, GARRIDO L, MARTINEZ M, PACHECO A, RUIZ H, COLALEO A, CREANZA D, DE FILIPPIS N, DE PALMA M, IASELLI G, MAGGI G, MAGGI M, NUZZO S, RANIERI A, RASO G, RUGGIERI F, SELVAGGI G, SILVESTRIS L, TEMPESTA P, TRICOMI A, ZITO G, HUANG X, LIN J, OUYANG Q, WANG T, XIE Y, XU R, XUE S, ZHANG J, ZHANG L, ZHAO W, ABBANEO D, BARKLOW T, BUCHMU, LLER O, CATTANEO M, CLERBAUX B, DREVERMANN H, FORTY RW, FRANK M, GIANOTTI F, HANSEN JB, HARVEY J, HUTCHCROFT DE, JANOT P, JOST B, KADO M, MATO P, MOUTOUSSI A, RANJARD F, ROLANDI L, SCHLATTER D, TEUBERT F, VALASSI A, VIDEAU I, BADAUD F, DESSAGNE S, FALVARD A, FAYOLLE D, GAY P, 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SCHAEL, R. BARATE, R. BRUNELIERE, I. DE BONIS, D. DECAMP, C. GOY, S. JEZEQUEL, J.P. LEES, F. MARTIN, E. MERLE, M. MINARD, B. PIETRZYK, B. TROCME, S. BRAVO, M. CASADO, M. CHMEISSANI, J. CRESPO, E. FERNANDEZ, M. FERNANDEZ-BOSMAN, L. GARRIDO, M. MARTINEZ, A. PACHECO, H. RUIZ, A. COLALEO, D. CREANZA, N. DE FILIPPIS, M. DE PALMA, G. IASELLI, G. MAGGI, M. MAGGI, S. NUZZO, A. RANIERI, G. RASO, F. RUGGIERI, G. SELVAGGI, L. SILVESTRIS, P. TEMPESTA, A. TRICOMI, G. ZITO, X. HUANG, J. LIN, Q. OUYANG, T. WANG, Y. XIE, R. XU, S. XUE, J. ZHANG, L. ZHANG, W. ZHAO, D. ABBANEO, T. BARKLOW, O. BUCHMULLER, M. CATTANEO, B. CLERBAUX, H. DREVERMANN, R. FORTY, M. FRANK, F. GIANOTTI, J. HANSEN, J. HARVEY, D. HUTCHCROFT, P. JANOT, B. JOST, M. KADO, P. MATO, A. MOUTOUSSI, F. RANJARD, L. ROLANDI, D. SCHLATTER, F. TEUBERT, A. VALASSI, I. VIDEAU, F. BADAUD, S. DESSAGNE, A. FALVARD, D. FAYOLLE, P. GAY, J. JOUSSET, B. MICHEL, S. MONTEIL, D. PALLIN, J. PASCOLO, P. PERRET, P. HANSEN, A. KRAAN, B. NILSSON, A. 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FISHER, W. FISHER, G. FORCONI, K. FREUDENREICH, C. FURETTA, Y. GALAKTIONOV, S. GANGULI, P. GARCIA-ABIA, M. GATAULLIN, S. GENTILE, S. GIAGU, Z. GONG, G. GRENIER, O. GRIMM, M. GRUENEWALD, M. GUIDA, V. GUPTA, A. GURTU, L. GUTAY, D. HAAS, D. HATZIFOTIADOU, T. HEBBEKER, A. HERVE, J. HIRSCHFELDER, H. HOFER, M. HOHLMANN, G. HOLZNER, S. HOU, J. HU, B. JIN, P. JINDAL, L. JONES, P. DE JONG, I. JOSA-MUTUBERRIA, M. KAUR, M. KIENZLE-FOCACCI, J. KIM, J. KIRKBY, W. KITTEL, A. KLIMENTOV, A. KO, M. KOPAL, V. KOUTSENKO, M. KRABER, R. KRAEMER, A. KRUGER, A. KUNIN, P. LADRON DE GUEVARA, I. LAKTINEH, G. LANDI, M. LEBEAU, A. LEBEDEV, P. LEBRUN, P. LECOMTE, P. LECOQ, P. LE COULTRE, J. LE GOFF, R. LEISTE, M. LEVTCHENKO, P. LEVCHENKO, C. LI, S. LIKHODED, C. LIN, W. LIN, F. LINDE, L. LISTA, Z. LIU, W. LOHMANN, E. LONGO, Y. LU, C. LUCI, L. LUMINARI, W. LUSTERMANN, W.G. MA, L. MALGERI, A. MALININ, C. MANA, J. MANS, J. MARTIN, F. MARZANO, K. MAZUMDAR, R. MCNEIL, S. MELE, L. MEROLA, M. MESCHINI, W. METZGER, A. MIHUL, H. MILCENT, G. MIRABELLI, J. MNICH, G. MOHANTY, G. MUANZA, A. MUIJS, B. MUSICAR, M. MUSY, S. NAGY, S. NATALE, M. NAPOLITANO, F. NESSI-TEDALDI, H. NEWMAN, A. NISATI, T. NOVAK, H. NOWAK, R. OFIERZYNSKI, G. ORGANTINI, I. PAL, C. PALOMARES, P. PAOLUCCI, R. PARAMATTI, G. PASSALEVA, S. PATRICELLI, T. PAUL, M. PAULUZZI, C. PAUS, F. PAUSS, M. PEDACE, S. PENSOTTI, D. PERRET-GALLIX, D. PICCOLO, F. PIERELLA, M. PIERI, M. PIOPPI, P. PIROUE, E. PISTOLESI, V. PLYASKIN, M. POHL, V. POZHIDAEV, J. POTHIER, D. PROKOFIEV, G. RAHAL-CALLOT, M. RAHAMAN, P. RAICS, N. RAJA, R. RAMELLI, P. RANCOITA, R. RANIERI, A. RASPEREZA, P. RAZIS, S. REMBECZKI, D. REN, M. RESCIGNO, S. REUCROFT, S. RIEMANN, K. RILES, B. ROE, L. ROMERO, A. ROSCA, C. ROSEMANN, C. ROSENBLECK, S. ROSIER-LEES, S. ROTH, J. RUBIO, G. RUGGIERO, H. RYKACZEWSKI, A. SAKHAROV, S. SAREMI, S. SARKAR, J. SALICIO, E. SANCHEZ, C. SCHAFER, V. SHCHEGELSKY, H. SCHOPPER, D. SCHOTANUS, C. SCIACCA, L. SERVOLI, S. SHEVCHENKO, N. SHIVAROV, V. SHOUTKO, E. SHUMILOV, A. SHVOROB, D. SON, C. SOUGA, P. SPILLANTINI, M. STEUER, D. STICKLAND, B. STOYANOV, A. STRAESSNER, K. SUDHAKAR, G. SULTANOV, L. SUN, S. SUSHKOV, H. SUTER, J. SWAIN, Z. SZILLASI, X. TANG, P. TARJAN, L. TAUSCHER, L. TAYLOR, B. TELLILI, D. TEYSSIER, C. TIMMERMANS, S. TING, S. TONWAR, J. TOTH, C. TULLY, K. TUNG, J. ULBRICHT, E. VALENTE, R.T. VAN DE WALLE, R. VASQUEZ, G. VESZTERGOMBI, I. VETLITSKY, G. VIERTEL, M. VIVARGENT, S. VLACHOS, I. VODOPIANOV, H. VOGEL, H. VOGT, I. VOROBEV, A. VOROBYOV, M. WADHWA, Q. WANG, X. WANG, Z. WANG, M. WEBER, S. WYNHOFF, L. XIA, Z. XU, J. YAMAMOTO, B. YANG, C. YANG, H. YANG, M. YANG, S. YEH, A. ZALITE, Y. ZALITE, Z. ZHANG, J. ZHAO, G. ZHU, R. ZHU, H. ZHUANG, A. ZICHICHI, B. ZIMMERMANN, M. ZOLLER, G. ABBIENDI, C. AINSLEY, P. AKESSON, G. ALEXANDER, J. ALLISON, P. AMARAL, G. ANAGNOSTOU, K. ANDERSON, S. ASAI, D. AXEN, G. AZUELOS, I. BAILEY, E. BARBERIO, T. BARILLARI, R. BARLOW, R. BATLEY, P. BECHTLE, T. BEHNKE, K. BELL, P. BELL, G. BELLA, A. BELLERIVE, G. BENELLI, S. BETHKE, O. BIEBEL, O. BOERIU, P. BOCK, M. BOUTEMEUR, S. BRAIBANT, L. BRIGLIADORI, R. BROWN, K. BUESSER, H. BURCKHART, S. CAMPANA, R. CARNEGIE, A. CARTER, J. CARTER, C. CHANG, D. CHARLTON, C. CIOCCA, A. CSILLING, M. CUFFIANI, S. DADO, S. DE JONG, A. DE ROECK, E.A. DE WOLF, K. DESCH, B. DIENES, M. DONKERS, J. DUBBERT, E. DUCHOVNI, G. DUCKECK, I. DUERDOTH, E. ETZION, F. FABBRI, L. FELD, P. FERRARI, F. FIEDLER, I. FLECK, M. FORD, A. FREY, P. GAGNON, J. GARY, S. GASCON-SHOTKIN, G. GAYCKEN, C. GEICH-GIMBEL, G. GIACOMELLI, P. GIACOMELLI, M. GIUNTA, J. GOLDBERG, E. GROSS, J. GRUNHAUS, M. GRUWE, P. GU, A. GUPTA, C. HAJDU, M. HAMANN, G. HANSON, A. HAREL, M. HAUSCHILD, C. HAWKES, R. HAWKINGS, R. HEMINGWAY, G. HERTEN, R. HEUER, J. HILL, K. HOFFMAN, D. HORVATH, P. IGO-KEMENES, K. ISHII, H. JEREMIE, U. JOST, P. JOVANOVIC, T. JUNK, N. KANAYA, J. KANZAKI, D. KARLEN, K. KAWAGOE, T. KAWAMOTO, R. KEELER, R. KELLOGG, B. KENNEDY, S. KLUTH, T. KOBAYASHI, M. KOBEL, S. KOMAMIYA, T. KRAMER, P. KRIEGER, J. VON KROGH, K. KRUGER, T. KUHL, M. KUPPER, G. LAFFERTY, H. LANDSMAN, D. LANSKE, J. LAYTER, D. LELLOUCH, J. LETTS, L. LEVINSON, J. LILLICH, S. LLOYD, F. LOEBINGER, J. LU, A. LUDWIG, J. LUDWIG, W. MADER, S. MARCELLINI, A. MARTIN, G. MASETTI, T. MASHIMO, P. MATTIG, J. MCKENNA, R. MCPHERSON, F. MEIJERS, W. MENGES, F. MERRITT, H. MES, N. MEYER, A. MICHELINI, S. MIHARA, G. MIKENBERG, D. MILLER, S. MOED, W. MOHR, T. MORI, A. MUTTER, K. NAGAI, I. NAKAMURA, H. NANJO, H. NEAL, R. NISIUS, S. O'NEALE, A. OH, M. OREGLIA, S. ORITO, C. PAHL, G. PASZTOR, J. PATER, J. PILCHER, J. PINFOLD, D. PLANE, B. POLI, O. POOTH, M. PRZYBYCIEN, A. QUADT, K. RABBERTZ, C. REMBSER, P. RENKEL, J. RONEY, Y. ROZEN, K. RUNGE, K. SACHS, T. SAEKI, E. SARKISIAN, A. SCHAILE, O. SCHAILE, P. SCHARFF-HANSEN, J. SCHIECK, T. SCHORNER-SADENIUS, MATTHIAS SCHRODER, M. SCHUMACHER, W. SCOTT, R. SEUSTER, T. SHEARS, B. SHEN, P. SHERWOOD, A. SKUJA, A. SMITH, R. SOBIE, S. SOLDNER-REMBOLD, F. SPANO, A. STAHL, D. STROM, R. STROHMER, S. TAREM, M. TASEVSKY, R. TEUSCHER, M. THOMSON, E. TORRENCE, D. TOYA, P. TRAN, I. TRIGGER, Z. TROCSANYI, E. TSUR, M. TURNER-WATSON, I. UEDA, B. UJVARI, C. VOLLMER, P. VANNEREM, R. VERTESI, M. VERZOCCHI, H. VOSS, J. VOSSEBELD, C. WARD, D. WARD, P. WATKINS, A. WATSON, N. WATSON, P. WELLS, T. WENGLER, N. WERMES, G. WILSON, J. WILSON, G. WOLF, T. WYATT, S. YAMASHITA, D. ZER-ZION, L. ZIVKOVIC, S. HEINEMEYER, A. PILAFTSIS, and G. WEIGLEIN more...
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Aleph ,PARTICLE PHYSICS ,LARGE ELECTRON POSITRON COLLIDER ,ALEPH ,DELPHI ,L3 ,OPAL ,Physics and Astronomy (miscellaneous) ,Parameter space ,01 natural sciences ,OPAL DETECTOR ,High Energy Physics - Experiment ,High Energy Physics - Experiment (hep-ex) ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,Event (probability theory) ,Boson ,Physics ,EXPLICIT CP VIOLATION ,ROOT-S=189 GEV ,FLAVOR INDEPENDENT SEARCH ,Particle physics - Experiment ,Settore FIS/01 - Fisica Sperimentale ,Higgs particle. search for ,SUPERGAUGE TRANSFORMATIONS ,ALEPH DELPHI L3 OPAL ,SUPERSYMMETRIC STANDARD MODEL ,ROOT-S ,Higgs boson ,Particle physics ,electron positron. colliding beams ,electron positron. annihilation ,FOS: Physical sciences ,supersymmetric standard model ,explicit cp violation ,electric-dipole moment ,e(+)e(-) collisions ,root-s=189 gev ,opal detector ,root-s ,z(0) decays ,supergauge transformations ,radiative-corrections ,Higgs particle. electroproduction ,ddc:500.2 ,ELECTRIC-DIPOLE MOMENT ,E(+)E(-) COLLISIONS ,Z(0) DECAYS ,Higgs particle ,LEP collider ,Next-to-Minimal Supersymmetric Standard Model ,Consistency (statistics) ,0103 physical sciences ,ddc:530 ,High Energy Physics ,010306 general physics ,Engineering (miscellaneous) ,electron positron ,010308 nuclear & particles physics ,High Energy Physics::Phenomenology ,Higgs Boson ,LEP ,HIGGS ,Higgs boson, standard model ,Experimental High Energy Physics ,High Energy Physics::Experiment ,MSSM ,Minimal Supersymmetric Standard Model ,Higgs - Abstract
The four LEP collaborations, ALEPH, DELPHI, L3 and OPAL, have searched for the neutral Higgs bosons which are predicted by the Minimal Supersymmetric Standard Model (MSSM). The data of the four collaborations are statistically combined and examined for their consistency with the background hypothesis and with a possible Higgs boson signal. The combined LEP data show no significant excess of events which would indicate the production of Higgs bosons. The search results are used to set upper bounds on the cross-sections of various Higgs-like event topologies. The results are interpreted within the MSSM in a number of "benchmark" models, including CP-conserving and CP-violating scenarios. These interpretations lead in all cases to large exclusions in the MSSM parameter space. Absolute limits are set on the parameter tanb and, in some scenarios, on the masses of neutral Higgs bosons., 81 pages, 22 figures, Submitted to Euro. Phys. J. C more...
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- 2006
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27. Fundamental Symmetries and Interactions
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Klaus-Peter Jungmann and KVI - Center for Advanced Radiation Technology
- Subjects
Physics ,Nuclear and High Energy Physics ,Particle physics ,Muon ,Physics beyond the Standard Model ,MUON ,FOS: Physical sciences ,Fermion ,MASS ,LIMIT ,ELECTRIC-DIPOLE MOMENT ,PHYSICS ,Electric dipole moment ,FUTURE ,Homogeneous space ,Limit (mathematics) ,NEUTRINO ,TAU ,Nuclear Experiment (nucl-ex) ,Neutrino ,LEPTON ,Nuclear Experiment ,Lepton - Abstract
In Nuclear Physics numerous possibilities exist to investigate fundamental symmetries and interactions. In particular, the precise measurements of properties of fundamental fermions, searches for new interactions in $\beta$-decays, and violations of discrete symmeties offer possibilities to search for physics beyond Standard Theory. Precise measurements of fundamental constants can be carried out. Low energy experiments allow to probe New Physics at mass scales far beyond the reach of present accelerators or such planned for the future and at which predicted new particles could be produced directly., Comment: Review talk at the International Nuclear Physics Conference INPC04, G\"oteborg, Sweden more...
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- 2005
28. Fundamental symmetries and interactions studied with radioactive isotopes in atom traps
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Wilschut, H.W.E.M., Gacsi, Z, Dombradi, Z, Krasznahorkay, A, and KVI - Center for Advanced Radiation Technology
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ELECTRIC-DIPOLE MOMENT ,NEUTRON DECAY ,beta-nu correlations ,fundamental symmetries ,Physics::Atomic Physics ,electric dipole moment ,BETA-DECAY ,Nuclear Experiment ,LIMIT - Abstract
The structure of certain nuclei and atoms allow one to study fundamental symmetries and interactions. In this review we consider the search for Time-Reversal invariance Violation (TRV). We consider two options: TRV in beta decay or the search for the forbidden Electric Dipole Moment (EDM). In both cases atomic trapping can be an appropriate tool. For beta decay radioactive isotopes are necessary, but also for EDM searches they appear to be useful. more...
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- 2005
29. Fundamental symmetries and interactions studied with radioactive isotopes in atom traps
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ELECTRIC-DIPOLE MOMENT ,NEUTRON DECAY ,beta-nu correlations ,fundamental symmetries ,electric dipole moment ,BETA-DECAY ,LIMIT - Abstract
The structure of certain nuclei and atoms allow one to study fundamental symmetries and interactions. In this review we consider the search for Time-Reversal invariance Violation (TRV). We consider two options: TRV in beta decay or the search for the forbidden Electric Dipole Moment (EDM). In both cases atomic trapping can be an appropriate tool. For beta decay radioactive isotopes are necessary, but also for EDM searches they appear to be useful. more...
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- 2005
30. Study of tau-pair production in photon-photon collisions at LEP and limits on the anomalous electromagnetic moments of the tau lepton
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C. Espirito Santo, Ugo Amaldi, M. Trochimczuk, M. Pimenta, I. Zimin, W. Mitaroff, S. Tzamarias, G. Leder, M. Witek, E. Piotto, G. Grosdidier, A. G. Olshevski, T. King, P. Abreu, Alessandra Romero, F. Kapusta, Richard Brenner, G. Smadja, D. Vilanova, V. Bowcock, B. Stugu, Keith Hamilton, Gareth J. Barker, M. Gandelman, Maurizio Bonesini, E. I. Rosenberg, A. Zalewska, Fabio Cossutti, Roberto Chierici, R. Orava, C. Martinez-Rivero, J-C. Marin, R. Gokieli, P. V. Chliapnikov, J. Montenegro, Alexander Lincoln Read, Igor Boyko, Juan Fuster, T. Lesiak, Rupert Leitner, M. Feindt, S. Moreno, T. Alderweireld, Patrick Jarry, Luis Peralta, A. Kiiskinen, U. Mjoernmark, Klaus Hamacher, Sandra Amato, P. Bruckman, D. Johansson, A. DiSimone, T. Podobnik, U. Kerzel, F. Richard, Evangelos Gazis, C. Matteuzzi, F. Ledroit, M. Berggren, O. Yushchenko, R. Sekulin, A. Augustinus, L. Mundim, V. Verzi, J. H. Wickens, Marco Paganoni, P. Bambade, L. Jungermann, Dimitrios Fassouliotis, A. Savoy-Navarro, M. Nassiakou, J. Costa, M. Stanitzki, T. Moa, Nikolaos P. Mastroyiannopoulos, Diego Rodriguez, Nathalie Besson, M. Mazzucato, G. Kernel, Marek Szczekowski, W. D. Apel, C. Troncon, S. O. Holmgren, T. Tabarelli, V. Ruhlmann-Kleider, F. Fulda-Quenzer, A. Deangelis, Josef Strauss, F. Pierre, U. Mueller, L. Vitale, E. Pol, V. Perepelitsa, N. Anjos, M. Tobin, A. Sadovsky, C. Taffard, Antonio Onofre, Y. Arnoud, Phillip Allport, Vincent Hedberg, W. Venus, U. Schwickerath, E. Graziani, Georgios Fanourakis, Jan Ridky, K. H. Becks, M. A. Winter, K. Osterberg, H. Foeth, G. Della Ricca, K. E. Johansson, A. Petrolini, Ulrich Parzefall, B. Crawley, Marcin Kucharczyk, L. Pieri, J. Van Eldik, Daniel Jeans, T. daSilva, B. De Lotto, A. Van Lysebetten, A. M. Segar, V. Obraztsov, L. Berntzon, P. Lutz, Jacques Lemonne, A. Markou, P. Rebecchi, Jalal Abdallah, P. B. Renton, H. Herr, Dietrich Liko, A. N. Sisakian, I. van Vulpen, J. Holt, G. Polok, Javier Cuevas, L. G. Tkatchev, P. Collins, Mattias Ellert, Daniel Wicke, F. Tegenfeldt, B. Tome, P. Antilogus, J. Rehn, B. Golob, R. Alemany-Fernandez, Daniel Bloch, B. Åsman, Peter Kluit, M. Begalli, Goeran Jarlskog, J. Masik, C. Haag, N. Van Remortel, S. Haug, D. Ryabtchikov, Ahmimed Ouraou, Tiziano Rovelli, Klaus Moenig, F. Hauler, W. Liebig, Tord Ekelof, Guillelmo Gomez-Ceballos, P. Verdier, Marco Battaglia, Nuno Filipe Castro, D. Crennell, F. Mandl, R. Sosnowski, Michal Bluj, G. Borisov, L. Salmi, B. Marechal, E. C. Katsoufis, Daniel Treille, N. Pukhaeva, Ernesto Migliore, R. Monge, Krzysztof Doroba, E. Ben-Haim, Markus Elsing, S. Ask, A. Ballestrero, Wolfgang Adam, Rosy Nicolaidou, Marta Calvi, P. Buschmann, B. Muryn, Maarten Boonekamp, L. Booth, L. De Paula, T. Albrecht, K. Muenich, José Salt, G. Eigen, A. Andreazza, U. Chung, F. Mazzucato, Luc Pape, B. Bouquet, P. Roudeau, Oxana Smirnova, M. Zupan, Corinne Berat, Olga Botner, P. Kersevan, Filipe Veloso, Louis Lyons, S. Katsanevas, T. Meyer, Chiara Meroni, Martijn Mulders, D. Y. Bardin, Carmen García, J. Hoffman, C. Parkes, J. D'Hondt, M. Nikolenko, Francisco Matorras, Martino Margoni, F. Carena, Oliver Passon, Valeriy Pozdniakov, L. Ramler, M. L. Turluer, E. Fokitis, D. Reid, A. Stocchi, Francesco Navarria, Pablo Tortosa, A. Zintchenko, J. Dalmau, Per Jönsson, H. Lopes, M. Rivero, M. Blom, V. Zhuravlov, A. Malek, A. Sokolov, Christine Kourkoumelis, Tomasz Szumlak, M. Bracko, Andre Sopczak, P. Poropat, Demetrios Loukas, E. Brodet, T. Myklebust, Jesus Marco, M. Baubillier, T. Spassov, Fabrizio Parodi, V. Canale, C. DeClercq, R. Contri, Nicola Amapane, A. Oyanguren, J. Guy, Manolis Dris, A. Tonazzo, Alberto Benvenuti, P. Palacios, Fabrizio Ferro, K. Hultqvist, Rafael Marco, S. Todorovova, T. Allmendinger, D. Moraes, L. Bugge, Antonio Ferrer, G. Wilkinson, D. Bertrand, Jiri Chudoba, V. Poireau, W. DaSilva, H. Wahlen, M. Hennecke, Danilo Zavrtanik, J. Fernandez, Paul Baillon, M. Szeptycka, Marc Besancon, Sofia Andringa, Ph. Charpentier, Petr Travnicek, M. Moch, N. Jackson, K. Grzelak, Allan Hallgren, Giovanni Valenti, J. Piedra, Paolo Ronchese, E. Anashkin, Nektarios Benekos, G. Tristram, H. Palka, Tiziano Camporesi, J. W. Lamsa, G. Cosme, Petar Adzic, R. Reinhardt, C. Weiser, Andrea Perrotta, E. Augustin, R. Mc Nulty, P. Tyapkin, Chiara Mariotti, Francesca Romana Cavallo, A. Baroncelli, Paulo J. S. Gonçalves, P. Van Dam, W. J. Murray, D. Papadopoulou, A. Behrmann, Piotr Zalewski, V.A. Uvarov, L. DiCiaccio, M. Lopez, J. Timmermans, J. Rames, P. Kokkinias, M. Brunet, J. Kjaer, A. Pullia, Paolo Morettini, A. Houlden, O.M. Kouznetsov, J. Washbrook, V. Lepeltier, M. Siebel, Krzysztof Nawrocki, Stavros Maltezos, Paolo Checchia, G. Vegni, Ph. Gavillet, J. MacNaughton, M. Chapkin, Vaclav Vrba, Z. Krumstein, S. Paiano, U. Flagmeyer, N. De Maria, A. Tyapkin, Anna Lipniacka, W. DeBoer, C. Joram, J. Drees, R. Barbier, L. Leinonen, K. Cieslik, A. DeMin, G. Myatt, A. Passeri, Agnieszka Oblakowska-Mucha, Cossutti, F., DELLA RICCA, Giuseppe, Poropat, Paolo, Vitale, Lorenzo, Laboratoire de Physique Nucléaire et de Hautes Énergies (LPNHE), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS), Laboratoire de Physique Subatomique et de Cosmologie (LPSC), Université Joseph Fourier - Grenoble 1 (UJF)-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP )-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Institut Polytechnique de Grenoble - Grenoble Institute of Technology-Centre National de la Recherche Scientifique (CNRS), Laboratoire de l'Accélérateur Linéaire (LAL), Université Paris-Sud - Paris 11 (UP11)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Institut de Physique Nucléaire de Lyon (IPNL), Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Institut de Recherches Subatomiques (IReS), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Cancéropôle du Grand Est-Université Louis Pasteur - Strasbourg I-Centre National de la Recherche Scientifique (CNRS), Physique Corpusculaire et Cosmologie - Collège de France (PCC), Collège de France (CdF (institution))-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), DELPHI, Student Lab and Education, (Astro)-Particles Physics, Finance, Université Joseph Fourier - Grenoble 1 (UJF)-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Institut Polytechnique de Grenoble - Grenoble Institute of Technology-Centre National de la Recherche Scientifique (CNRS)-Université Grenoble Alpes (UGA), Collège de France (CdF)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Centre National de la Recherche Scientifique (CNRS)-Université Paris Diderot - Paris 7 (UPD7)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Pierre et Marie Curie - Paris 6 (UPMC), Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP )-Institut Polytechnique de Grenoble - Grenoble Institute of Technology-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Joseph Fourier - Grenoble 1 (UJF)-Centre National de la Recherche Scientifique (CNRS), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Université Paris-Sud - Paris 11 (UP11), Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3), J. ABDALLAH, P. ABREU, W. ADAM, P. ADZIC, T. ALBRECHT, T. ALDERWEIRELD, R. ALEMANY-FERNANDEZ, T. ALLMENDINGER, P.P. ALLPORT, U. AMALDI, N. AMAPANE, S. AMATO, E. ANASHKIN, A. ANDREAZZA, S. ANDRINGA, N. ANJOS, P. ANTILOGUS, W.D. APEL, Y. ARNOUD, S. ASK, B. ASMAN, J.E. AUGUSTIN, A. AUGUSTINUS, P. BAILLON, A. BALLESTRERO, P. BAMBADE, R. BARBIER, D. BARDIN, G.J. BARKER, A. BARONCELLI, M. BATTAGLIA, M. BAUBILLIER, K.H. BECKS, M. BEGALLI, A. BEHRMANN, E. BEN-HAIM, N. BENEKOS, A. BENVENUTI, C. BERAT, M. BERGGREN, L. BERNTZON, D. BERTRAND, M. BESANCON, N. BESSON, D. BLOCH, M. BLOM, M. BLUJ, M. BONESINI, M. BOONEKAMP, P.S.L. BOOTH, G. BORISOV, O. BOTNER, B. BOUQUET, T.J.V. BOWCOCK, I. BOYKO, M. BRACKO, R. BRENNER, E. BRODET, P. BRUCKMAN, J.M. BRUNET, L. BUGGE, P. BUSCHMANN, M. CALVI, T. CAMPORESI, V. CANALE, F. CARENA, N. CASTRO, F. CAVALLO, M. CHAPKIN, PH. CHARPENTIER, P. CHECCHIA, R. CHIERICI, P. CHLIAPNIKOV, J. CHUDOBA, S.U. CHUNG, K. CIESLIK, P. COLLINS, R. CONTRI, G. COSME, F. COSSUTTI, M.J. COSTA, D. CRENNELL, J. CUEVAS, J. D'HONDT, J. DALMAU, T. DA SILVA, W. DA SILVA, G. DELLA RICCA, A. DE ANGELIS, W. DE BOER, C. DE CLERCQ, B. DE LOTTO, N. DE MARIA, A. DE MIN, L. DE PAULA, L. DI CIACCIO, A. DI SIMONE, K. DOROBA, J. DREES, M. DRIS, G. EIGEN, T. EKELOF, M. ELLERT, M. ELSING, M.C. ESPIRITO SANTO, G. FANOURAKIS, D. FASSOULIOTIS, M. FEINDT, J. FERNANDEZ, A. FERRER, F. FERRO, U. FLAGMEYER, H. FOETH, E. FOKITIS, F. FULDA-QUENZER, J. FUSTER, M. GANDELMAN, C. GARCIA, PH. GAVILLET, E. GAZIS, R. GOKIELI, B. GOLOB, G. GOMEZ-CEBALLOS, P. GONCALVES, E. GRAZIANI, G. GROSDIDIER, K. GRZELAK, J. GUY, C. HAAG, A. HALLGREN, K. HAMACHER, K. HAMILTON, S. HAUG, F. HAULER, V. HEDBERG, M. HENNECKE, H. HERR, J. HOFFMAN, S.O. HOLMGREN, P.J. HOLT, M.A. HOULDEN, K. HULTQVIST, J.N. JACKSON, G. JARLSKOG, P. JARRY, D. JEANS, E.K. JOHANSSON, P.D. JOHANSSON, P. JONSSON, C. JORAM, L. JUNGERMANN, FREDERIC KAPUSTA, S. KATSANEVAS, E. KATSOUFIS, G. KERNEL, B.P. KERSEVAN, U. KERZEL, A. KIISKINEN, B.T. KING, N.J. KJAER, P. KLUIT, P. KOKKINIAS, C. KOURKOUMELIS, O. KOUZNETSOV, Z. KRUMSTEIN, M. KUCHARCZYK, J. LAMSA, G. LEDER, F. LEDROIT, L. LEINONEN, R. LEITNER, J. LEMONNE, V. LEPELTIER, T. LESIAK, W. LIEBIG, D. LIKO, A. LIPNIACKA, J.H. LOPES, J.M. LOPEZ, D. LOUKAS, P. LUTZ, L. LYONS, J. MACNAUGHTON, A. MALEK, S. MALTEZOS, F. MANDL, J. MARCO, R. MARCO, B. MARECHAL, M. MARGONI, J.C. MARIN, C. MARIOTTI, A. MARKOU, C. MARTINEZ-RIVERO, J. MASIK, N. MASTROYIANNOPOULOS, F. MATORRAS, C. MATTEUZZI, F. MAZZUCATO, M. MAZZUCATO, R. MCNULTY, C. MERONI, E. MIGLIORE, W. MITAROFF, U. MJOERNMARK, T. MOA, M. MOCH, K. MOENIG, R. MONGE, J. MONTENEGRO, D. MORAES, S. MORENO, P. MORETTINI, U. MUELLER, K. MUENICH, M. MULDERS, L. MUNDIM, W. MURRAY, B. MURYN, G. MYATT, T. MYKLEBUST, M. NASSIAKOU, F. NAVARRIA, K. NAWROCKI, R. NICOLAIDOU, M. NIKOLENKO, A. OBLAKOWSKA-MUCHA, V. OBRAZTSOV, A. OLSHEVSKI, A. ONOFRE, R. ORAVA, K. OSTERBERG, A. OURAOU, A. OYANGUREN, M. PAGANONI, S. PAIANO, J.P. PALACIOS, H. PALKA, TH.D. PAPADOPOULOU, L. PAPE, C. PARKES, F. PARODI, U. PARZEFALL, A. PASSERI, O. PASSON, L. PERALTA, V. PEREPELITSA, A. PERROTTA, A. PETROLINI, J. PIEDRA, L. PIERI, F. PIERRE, M. PIMENTA, E. PIOTTO, T. PODOBNIK, V. POIREAU, M.E. POL, G. POLOK, V. POZDNIAKOV, N. PUKHAEVA, A. PULLIA, J. RAMES, ALEXANDER L. READ, P. REBECCHI, J. REHN, D. REID, R. REINHARDT, P. RENTON, F. RICHARD, J. RIDKY, M. RIVERO, D. RODRIGUEZ, A. ROMERO, P. RONCHESE, P. ROUDEAU, T. ROVELLI, V. RUHLMANN-KLEIDER, D. RYABTCHIKOV, A. SADOVSKY, L. SALMI, J. SALT, C. SANDER, A. SAVOY-NAVARRO, U. SCHWICKERATH, A. SEGAR, R. SEKULIN, M. SIEBEL, A. SISAKIAN, G. SMADJA, O. SMIRNOVA, A. SOKOLOV, A. SOPCZAK, R. SOSNOWSKI, T. SPASSOV, M. STANITZKI, A. STOCCHI, J. STRAUSS, B. STUGU, M. SZCZEKOWSKI, M. SZEPTYCKA, T. SZUMLAK, T. TABARELLI, A.C. TAFFARD, F. TEGENFELDT, J. TIMMERMANS, L. TKATCHEV, M. TOBIN, S. TODOROVOVA, B. TOME, A. TONAZZO, P. TORTOSA, P. TRAVNICEK, D. TREILLE, G. TRISTRAM, M. TROCHIMCZUK, C. TRONCON, M.L. TURLUER, I.A. TYAPKIN, P. TYAPKIN, S. TZAMARIAS, V. UVAROV, G. VALENTI, P. VAN DAM, J. VAN ELDIK, A. VAN LYSEBETTEN, N. VAN REMORTEL, I. VAN VULPEN, G. VEGNI, F. VELOSO, W. VENUS, P. VERDIER, V. VERZI, D. VILANOVA, L. VITALE, V. VRBA, H. WAHLEN, A.J. WASHBROOK, C. WEISER, D. WICKE, J. WICKENS, G. WILKINSON, M. WINTER, M. WITEK, O. YUSHCHENKO, A. ZALEWSKA, P. ZALEWSKI, D. ZAVRTANIK, V. ZHURAVLOV, N.I. ZIMIN, A. ZINTCHENKO, M. ZUPAN, DELPHI Collaboration, Abdallah, J, Abreu, P, Adam, W, Adzic, P, Albrecht, T, Alderweireld, T, Alemany Fernandez, R, Allmendinger, T, Allport, P, Amaldi, U, Amapane, N, Amato, S, Anashkin, E, Andreazza, A, Andringa, S, Anjos, N, Antilogus, P, Apel, W, Arnoud, Y, Ask, S, Asman, B, Augustin, E, Augustinus, A, Baillon, P, Ballestrero, A, Bambade, P, Barbier, R, Bardin, D, Barker, G, Baroncelli, A, Battaglia, M, Baubillier, M, Becks, K, Begalli, M, Behrmann, A, Ben Haim, E, Benekos, N, Benvenuti, A, Berat, C, Berggren, M, Berntzon, L, Bertrand, D, Besancon, M, Besson, N, Bloch, D, Blom, M, Bluj, M, Bonesini, M, Boonekamp, M, Booth, L, Borisov, G, Botner, O, Bouquet, B, Bowcock, V, Boyko, I, Bracko, M, Brenner, R, Brodet, E, Bruckman, P, Brunet, M, Bugge, L, Buschmann, P, Calvi, M, Camporesi, T, Canale, V, Carena, F, Castro, N, Cavallo, F, Chapkin, M, Charpentier, P, Checchia, P, Chierici, R, Chliapnikov, P, Chudoba, J, Chung, U, Cieslik, K, Collins, P, Contri, R, Cosme, G, Cossutti, F, Costa, J, Crawley, B, Crennell, D, Cuevas, J, D'Hondt, J, Dalmau, J, da Silva, T, Da Silva, W, Della Ricca, G, De Angelis, A, Deboer, W, De Clercq, C, De Lotto, B, De Maria, N, Demin, A, Depaula, L, Di Ciaccio, L, Di Simone, A, Doroba, K, Dris, M, Eigen, G, Ekelof, T, Ellert, M, Elsing, M, Santo, C, Fanourakis, G, Fassouliotis, D, Feindt, M, Fernandez, J, Ferrer, A, Ferro, F, Flagmeyer, U, Foeth, H, Fokitis, E, Fulda Quenzer, F, Fuster, J, Gandelman, M, Garcia, C, Gavillet, P, Gazis, E, Gokieli, R, Golob, B, Gomez Ceballos, G, Goncalves, P, Graziani, E, Grosdidier, G, Grzelak, K, Guy, J, Haag, C, Hallgren, A, Hamacher, K, Hamilton, K, Haug, S, Hauler, F, Hedberg, V, Hennecke, M, Herr, H, Hoffman, J, Holmgren, S, Holt, J, Houlden, A, Hultqvist, K, Jackson, N, Jarlskog, G, Jarry, P, Jeans, D, Johansson, K, Johansson, D, Jonsson, P, Joram, C, Jungermann, L, Kapusta, F, Katsanevas, S, Katsoufis, E, Kernel, G, Kersevan, P, Kerzel, U, Kiiskinen, A, King, T, Kjaer, J, Kluit, P, Kokkinias, P, Kourkoumelis, C, Kouznetsov, O, Krumstein, Z, Kucharczyk, M, Lamsa, J, Leder, G, Ledroit, F, Leinonen, L, Leitner, R, Lemonne, J, Lepeltier, V, Lesiak, T, Liebig, W, Liko, D, Lipniacka, A, Lopes, H, Lopez, M, Loukas, D, Lutz, P, Lyons, L, Macnaughton, J, Malek, A, Maltezos, S, Mandl, F, Marco, J, Marco, R, Marechal, B, Margoni, M, Marin, J, Mariotti, C, Markou, A, Martinez Rivero, C, Masik, J, Mastroyiannopoulos, N, Matorras, F, Matteuzzi, C, Mazzucato, F, Mazzucato, M, Mc Nulty, R, Meroni, C, Meyer, T, Migliore, E, Mitaroff, W, Mjoernmark, U, Moa, T, Moch, M, Moenig, K, Monge, R, Montenegro, J, Moraes, D, Moreno, S, Morettini, P, Mueller, U, Muenich, K, Mulders, M, Mundim, L, Murray, W, Muryn, B, Myatt, G, Myklebust, T, Nassiakou, M, Navarria, F, Nawrocki, K, Nicolaidou, R, Nikolenko, M, Oblakowska Mucha, A, Obraztsov, V, Olshevski, A, Onofre, A, Orava, R, Osterberg, K, Ouraou, A, Oyanguren, A, Paganoni, M, Paiano, S, Palacios, P, Palka, H, Papadopoulou, D, Pape, L, Parkes, C, Parodi, F, Parzefall, U, Passeri, A, Passon, O, Peralta, L, Perepelitsa, V, Perrotta, A, Petrolini, A, Piedra, J, Pieri, L, Pierre, F, Pimenta, M, Piotto, E, Podobnik, T, Poireau, V, Pol, E, Polok, G, Poropat, P, Pozdniakov, V, Pukhaeva, N, Pullia, A, Rames, J, Ramler, L, Read, A, Rebecchi, P, Rehn, J, Reid, D, Reinhardt, R, Renton, P, Richard, F, Ridky, J, Rivero, M, Rodriguez, D, Romero, A, Ronchese, P, Rosenberg, E, Roudeau, P, Rovelli, T, Ruhlmann Kleider, V, Ryabtchikov, D, Sadovsky, A, Salmi, L, Salt, J, Savoy Navarro, A, Schwickerath, U, Segar, A, Sekulin, R, Siebel, M, Sisakian, A, Smadja, G, Smirnova, O, Sokolov, A, Sopczak, A, Sosnowski, R, Spassov, T, Stanitzki, M, Stocchi, A, Strauss, J, Stugu, B, Szczekowski, M, Szeptycka, M, Szumlak, T, TABARELLI DE FATIS, T, Taffard, C, Tegenfeldt, F, Timmermans, J, Tkatchev, L, Tobin, M, Todorovova, S, Tome, B, Tonazzo, A, Tortosa, P, Travnicek, P, Treille, D, Tristram, G, Trochimczuk, M, Troncon, C, Turluer, M, Tyapkin, A, Tyapkin, P, Tzamarias, S, Uvarov, V, Valenti, G, Van Dam, P, Van Eldik, J, Van Lysebetten, A, van Remortel, N, Van Vulpen, I, Vegni, G, Veloso, F, Venus, W, Verdier, P, Verzi, V, Vilanova, D, Vitale, L, Vrba, V, Wahlen, H, Washbrook, J, Weiser, C, Wicke, D, Wickens, J, Wilkinson, G, Winter, M, Witek, M, Yushchenko, O, Zalewska, A, Zalewski, P, Zavrtanik, D, Zhuravlov, V, Zimin, I, Zintchenko, A, and Zupan, M more...
- Subjects
Particle physics ,MAGNETIC-MOMENT ,Photon ,Physics and Astronomy (miscellaneous) ,MONTE-CARLO SIMULATION ,BOUNDS ,GAMMA-GAMMA ,FOS: Physical sciences ,Elementary particle ,FUNDAMENTAL PHYSICAL CONSTANTS ,01 natural sciences ,High Energy Physics - Experiment ,Nuclear physics ,ELECTRIC-DIPOLE MOMENT ,High Energy Physics - Experiment (hep-ex) ,E(+)E(-) COLLIDERS ,SEARCH ,0103 physical sciences ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,010306 general physics ,Engineering (miscellaneous) ,DELPHI ,Physics ,Luminosity (scattering theory) ,010308 nuclear & particles physics ,High Energy Physics::Phenomenology ,CODATA RECOMMENDED VALUES ,LEP ,Fermion ,LARGE ELECTRON POSITRON COLLIDER ,Physics::History of Physics ,high energy collder ,Dipole ,FIS/01 - FISICA SPERIMENTALE ,Pair production ,PARTICLE PHYSICS ,Large Electron–Positron Collider ,Computer Science::Programming Languages ,High Energy Physics::Experiment ,TAU ,Particle Physics - Experiment ,Lepton - Abstract
Tau-pair production in the process e+e- -> e+e-tau+tau- was studied using data collected by the DELPHI experiment at LEP2 during the years 1997 - 2000. The corresponding integrated luminosity is 650 pb^{-1}. The values of the cross-section obtained are found to be in agreement with QED predictions. Limits on the anomalous magnetic and electric dipole moments of the tau lepton are deduced., 20 pages, 9 figures, Accepted by Eur. Phys. J. C more...
- Published
- 2004
- Full Text
- View/download PDF
31. TRI mu P - Trapped radioactive isotopes
- Subjects
ELECTRIC-DIPOLE MOMENT ,VIOLATION ,Nuclear Experiment ,LIMIT - Abstract
At the Kernfysisch Versneller Instituut (KVI) a new facility (TRImuP) is under development. It aims for producing a spectrum of radioactive isotopes in direct, inverse kinematics fusion and evaporation or fragmentation reactions with heavy ion beams from the superconducting cyclotron AGOR. The products will be slowed down and trapped for accurate measurements of fundamental symmetries and interactions in physics. The scientific focus of the local KVI research groups includes precision studies of nuclear beta-decays through beta-neutrino (recoil nucleus) momentum correlations in weak decays and searches for permanent electric dipole moments in heavy atomic systems. This research programme offers a large potential for discovering new physics or to limit parameters in models beyond standard theory significantly. The scientific approach chosen in TRImuP can be regarded as complementary to such high energy physics. The TRImuP facility in Groningen will be open for users worldwide. more...
- Published
- 2003
32. A precise measurement of the muon magnetic anomaly
- Author
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Jungmann, KP and KVI - Center for Advanced Radiation Technology
- Subjects
ELECTRIC-DIPOLE MOMENT ,G-2 EXPERIMENT ,POSITIVE MUON ,CONSTRAINTS ,PARTICLES ,INTERVAL ,CPT ,FIELD ,NMR - Abstract
At the Brookhaven National Laboratory (BNL) a precision experiment of the muon magnetic anomaly a(mu) in a magnetic storage ring is on its way. Measurements carried out on positive muons in 1999 have resulted in a(mu+) = 11,659,202(14)(6) x 10(-10) (1.3 ppm). A difference between this value and the theoretical value at the time of publication has lead to a careful reevaluation of all contributions. At present there are several independent theoretical values which are based on standard theory. They agree with each other and are within one to two standard deviations of the above value. The goal of the experiment is a precision of 0.35 ppm. About eight times more data are being analyzed and additional data taking is foreseen. Eventual agreement with experiment would allow to put stringent limits on parameters in theoretical approaches beyond the standard model. Disagreement could indicate new physics. more...
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- 2003
33. TRI mu P - Trapped radioactive isotopes: mu icrolaboratories for fundamental physics
- Author
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Jungmann, K, Berg, GP, Dendooven, P, Dermois, O, Harakeh, MN, Hoekstra, R, Morgenstern, R, Rogachevskiy, A, Sanchez-Vega, M, Willmann, L, Wilschut, HW, Bentvelsen, S, DeJong, P, Koch, J, Laenen, E, and KVI - Center for Advanced Radiation Technology more...
- Subjects
ELECTRIC-DIPOLE MOMENT ,VIOLATION ,Nuclear Experiment ,LIMIT - Abstract
At the Kernfysisch Versneller Instituut (KVI) a new facility (TRImuP) is under development. It aims for producing a spectrum of radioactive isotopes in direct, inverse kinematics fusion and evaporation or fragmentation reactions with heavy ion beams from the superconducting cyclotron AGOR. The products will be slowed down and trapped for accurate measurements of fundamental symmetries and interactions in physics. The scientific focus of the local KVI research groups includes precision studies of nuclear beta-decays through beta-neutrino (recoil nucleus) momentum correlations in weak decays and searches for permanent electric dipole moments in heavy atomic systems. This research programme offers a large potential for discovering new physics or to limit parameters in models beyond standard theory significantly. The scientific approach chosen in TRImuP can be regarded as complementary to such high energy physics. The TRImuP facility in Groningen will be open for users worldwide. more...
- Published
- 2003
34. Trimp - A new facility to investigate fundamental interactions with optically trapped radioactive atoms
- Author
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Jungmann, K.P. and KVI - Center for Advanced Radiation Technology
- Subjects
ELECTRIC-DIPOLE MOMENT ,SPECTROSCOPY ,Nuclear Experiment ,LIMIT - Abstract
At the Kernfysisch Versneller Instituut (KVI) in Groningen, NL, a new facility (TRIμP) is under development. It aims for producing, slowing down and trapping of radioactive isotopes in order to perform accurate measurements on fundamental symmetries and interactions. A spectrum of radioactive nuclids will be produced in direct, inverse kinematics of fragmentation reactions using heavy ion beams from the superconducting AGOR cyclotron. The research programme pursued by the KVI group includes precision studies of nuclear β-decays through β–neutrino (recoil nucleus) momentum correlations in weak decays and searches for permanent electric dipole moments in heavy atomic systems. This offers a large potential for discovering new physics or to limit parameters in models beyond standard theory significantly. The scientific approach chosen in TRIμP can be regarded as complementary to such high energy physics. The facility in Groningen will be open for use by the worldwide community of scientists. more...
- Published
- 2002
35. Trimp - A new facility to investigate fundamental interactions with optically trapped radioactive atoms
- Subjects
ELECTRIC-DIPOLE MOMENT ,SPECTROSCOPY ,Nuclear Experiment ,LIMIT - Abstract
At the Kernfysisch Versneller Instituut (KVI) in Groningen, NL, a new facility (TRIμP) is under development. It aims for producing, slowing down and trapping of radioactive isotopes in order to perform accurate measurements on fundamental symmetries and interactions. A spectrum of radioactive nuclids will be produced in direct, inverse kinematics of fragmentation reactions using heavy ion beams from the superconducting AGOR cyclotron. The research programme pursued by the KVI group includes precision studies of nuclear β-decays through β–neutrino (recoil nucleus) momentum correlations in weak decays and searches for permanent electric dipole moments in heavy atomic systems. This offers a large potential for discovering new physics or to limit parameters in models beyond standard theory significantly. The scientific approach chosen in TRIμP can be regarded as complementary to such high energy physics. The facility in Groningen will be open for use by the worldwide community of scientists. more...
- Published
- 2002
36. Relativistic and correlation effects on molecular properties: The interhalogens ClF, BrF, BrCl, IF, ICl, and IBr
- Author
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Lucas Visscher, W.C. Nieuwpoort, W. A. de Jong, Jacek Styszynski, Faculty of Science and Engineering, Theoretical Chemistry, and AIMMS
- Subjects
Bond dipole moment ,Chemistry ,Nuclear Theory ,CONSTANTS ,General Physics and Astronomy ,Dissociation (chemistry) ,Bond length ,ELECTRIC-DIPOLE MOMENT ,Dipole ,Electric dipole moment ,Theory of relativity ,Polarizability ,MAGNETIC-PROPERTIES ,Quadrupole ,BINDING ,Physics::Atomic Physics ,Physical and Theoretical Chemistry ,Atomic physics - Abstract
The effect of relativity on the properties of the interhalogens ClF, BrF, BrCl, IF, IBr, and IBr is studied by comparing relativistic and nonrelativistic calculations. Bond lengths, harmonic frequencies, and dissociation energies show that the bond is weakened in the relativistic formalism. Relativity increases the electric dipole moment whereas the electric quadrupole moment and dipole polarizability display an irregular behavior. The relativistic contributions to the electric dipole and quadrupole moment of the iodine containing molecules are 10%–20% of the total value, whereas the contributions in the other molecules cannot be neglected. The value of the electric quadrupole moment is dominated by the relativistic contributions. more...
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- 1998
- Full Text
- View/download PDF
37. TRI mu P-trapped radioactive atoms-mu icrolaboratories for fundamental physics
- Author
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klaus jungmann, Gp, Berg, Dammalapati, U., Peter Dendooven, Dermois, O., Harakeh, Muhsin N., Ronnie Hoekstra, Morgenstern, R., Rogachevskiy, A., Sanchez-Vega, M., Rob Timmermans, Traykov, E., Lorenz Willmann, Hw, Wilschut, and KVI - Center for Advanced Radiation Technology more...
- Subjects
ELECTRIC-DIPOLE MOMENT ,Nuclear Experiment ,LIMIT - Abstract
At the Kernfysisch Versneller Instituut (KVI) in Groningen, NL, a new facility (TRImuP) is under development. Radioactive nuclei will be produced using heavy ion beams from the superconducting AGOR cyclotron. They are then slowed down and finally trapped in ion or atomic traps in order to perform precision experiments with them. The facility will be open for use by the worldwide community. The present local research programme includes precision studies of nuclear beta-decays through beta-neutrino (recoil nucleus) momentum correlations in weak decays as well as searches for permanent electric dipole moments in heavy atomic systems. Such experiments offer a large potential for discovering new physics or to put sensitive limits on parameters in models beyond standard theory. more...
38. Direct and indirect constraints on CP-violating Higgs-quark and Higgs-gluon interactions
- Author
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Vincenzo Cirigliano, Wouter Dekens, J. de Vries, Yang-Ting Chien, Emanuele Mereghetti, and High-Energy Frontier
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Quark ,Particle physics ,Nuclear and High Energy Physics ,Higgs Physics ,Nuclear Theory ,STANDARD MODEL ,FOS: Physical sciences ,01 natural sciences ,Nuclear Theory (nucl-th) ,ELECTRIC-DIPOLE MOMENT ,High Energy Physics - Phenomenology (hep-ph) ,High Energy Physics - Lattice ,0103 physical sciences ,Effective field theory ,Renormalization Group ,Physics::Atomic Physics ,Nuclear Experiment (nucl-ex) ,EFFECTIVE COUPLINGS ,010306 general physics ,Nuclear Experiment ,Physics ,BOSON PRODUCTION ,Large Hadron Collider ,010308 nuclear & particles physics ,High Energy Physics - Lattice (hep-lat) ,High Energy Physics::Phenomenology ,TIME-REVERSAL VIOLATION ,Gluon ,EFFECTIVE-FIELD THEORY ,Electric dipole moment ,High Energy Physics - Phenomenology ,CP violation ,MINIMAL FLAVOR VIOLATION ,HADRON-HADRON COLLISIONS ,PARTON DISTRIBUTIONS ,Quark–gluon plasma ,Beyond Standard Model ,Higgs boson ,High Energy Physics::Experiment ,CROSS-SECTION - Abstract
We investigate direct and indirect constraints on the complete set of anomalous CP-violating Higgs couplings to quarks and gluons originating from dimension-6 operators, by studying their signatures at the LHC and in electric dipole moments (EDMs). We show that existing uncertainties in hadronic and nuclear matrix elements have a significant impact on the interpretation of EDM experiments, and we quantify the improvements needed to fully exploit the power of EDM searches. Currently, the best bounds on the anomalous CP-violating Higgs interactions come from a combination of EDM measurements and the data from LHC Run 1. We argue that Higgs production cross section and branching ratios measurements at the LHC Run 2 will not improve the constraints significantly. On the other hand, the bounds on the couplings scale roughly linearly with EDM limits, so that future theoretical and experimental EDM developments can have a major impact in pinning down interactions of the Higgs., Included analysis of Higgs decay processes. References added more...
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39. High accuracy theoretical investigations of CaF, SrF, and BaF and implications for laser-cooling
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Hao, Yongliang, Pa��teka, Luka�� F., Visscher, Lucas, collaboration, the NL-eEDM, Aggarwal, Parul, Bethlem, Hendrick L., Boeschoten, Alexander, Borschevsky, Anastasia, Denis, Malika, Esajas, Kevin, Hoekstra, Steven, Jungmann, Klaus, Marshall, Virginia R., Meijknecht, Thomas B., Mooij, Maarten C., Timmermans, Rob G. E., Touwen, Anno, Ubachs, Wim, Willmann, Lorenz, Yin, Yanning, Zapara, Artem, AIMMS, Theoretical Chemistry, LaserLaB - Physics of Light, Atoms, Molecules, Lasers, High-Energy Frontier, Precision Frontier, and Van Swinderen Institute for Particle Physics and G more...
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Atomic Physics (physics.atom-ph) ,FOS: Physical sciences ,ALKALINE-EARTH MONOHALIDES ,General Physics and Astronomy ,MOLECULAR-BEAM ,010402 general chemistry ,01 natural sciences ,Physics - Atomic Physics ,OPTICAL DOUBLE-RESONANCE ,ELECTRIC-DIPOLE MOMENT ,Laser cooling ,0103 physical sciences ,WAVE-FUNCTIONS ,Physics::Atomic Physics ,SDG 7 - Affordable and Clean Energy ,RADIATIVE LIFETIMES ,Physical and Theoretical Chemistry ,Hyperfine structure ,RESOLVED MEASUREMENTS ,Physics ,Quantum Physics ,010304 chemical physics ,LIFETIME MEASUREMENTS ,Multireference configuration interaction ,0104 chemical sciences ,Dipole ,Electric dipole moment ,Coupled cluster ,EXCITED-STATES ,Excited state ,HYPERFINE-STRUCTURE ,Atomic physics ,Quantum Physics (quant-ph) ,Relativistic quantum chemistry ,Physics - Optics ,Optics (physics.optics) - Abstract
The NL-eEDM collaboration is building an experimental setup to search for the permanent electric dipole moment of the electron in a slow beam of cold barium fluoride molecules [Eur. Phys. J. D, 72, 197 (2018)]. Knowledge of molecular properties of BaF is thus needed to plan the measurements and in particular to determine an optimal laser-cooling scheme. Accurate and reliable theoretical predictions of these properties require incorporation of both high-order correlation and relativistic effects in the calculations. In this work theoretical investigations of the ground and the lowest excited states of BaF and its lighter homologues, CaF and SrF, are carried out in the framework of the relativistic Fock-space coupled cluster (FSCC) and multireference configuration interaction (MRCI) methods. Using the calculated molecular properties, we determine the Franck-Condon factors (FCFs) for the $A^2\Pi_{1/2} \rightarrow X^2\Sigma^{+}_{1/2}$ transition, which was successfully used for cooling CaF and SrF and is now considered for BaF. For all three species, the FCFs are found to be highly diagonal. Calculations are also performed for the $B^2\Sigma^{+}_{1/2} \rightarrow X^2\Sigma^{+}_{1/2}$ transition recently exploited for laser-cooling of CaF; it is shown that this transition is not suitable for laser-cooling of BaF, due to the non-diagonal nature of the FCFs in this system. Special attention is given to the properties of the $A'^2\Delta$ state, which in the case of BaF causes a leak channel, in contrast to CaF and SrF species where this state is energetically above the excited states used in laser-cooling. We also present the dipole moments of the ground and the excited states of the three molecules and the transition dipole moments (TDMs) between the different states., Comment: Minor changes; The following article has been submitted to the Journal of Chemical Physics. After it is published, it will be found at https://publishing.aip.org/resources/librarians/products/journals/ more...
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40. Physics beyond colliders at CERN: beyond the Standard Model working group report
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C. Vallee, Gaia Lanfranchi, C. Gatto, K. Petridis, Giuseppe Ruoso, A. Rozanov, Jonathan L. Feng, C. Burrage, Isabel Pedraza, James Baker Beacham, M. Lamont, T. Spadaro, F. Martinez-Vidal, M. Moulson, Anthony Hartin, Felix Kling, S. Gninenko, Joerg Jaeckel, J. Evans, Philip Schuster, Guy Wilkinson, Klaus-Peter Jungmann, Yannis K. Semertzidis, A. De Roeck, I. G. Irastorza, Cristina Lazzeroni, A. Lindner, Nicola Neri, Klaus Kirch, Simon Knapen, David Curtin, Michele Papucci, Maxim Pospelov, Centre de Physique des Particules de Marseille (CPPM), Aix Marseille Université (AMU)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS), Aix Marseille Université (AMU), Centre National de la Recherche Scientifique (CNRS)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Aix Marseille Université (AMU), and Precision Frontier more...
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HIGH-ENERGY ,High energy ,axions ,Physics - Instrumentation and Detectors ,Physics::Instrumentation and Detectors ,Physics beyond the Standard Model ,01 natural sciences ,High Energy Physics - Experiment ,dark matter: coupling ,High Energy Physics - Experiment (hep-ex) ,High Energy Physics - Phenomenology (hep-ph) ,photon: coupling ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,Detectors and Experimental Techniques ,physics.ins-det ,PHOTON VETO DETECTOR ,dark sector ,Physics ,Large Hadron Collider ,neutrino: pair production ,new physics: search for ,lepton: flavor: violation ,dark matter: pair production ,hep-ph ,Instrumentation and Detectors (physics.ins-det) ,photon: invisible decay ,NEUTRAL HEAVY-LEPTONS ,High Energy Physics - Phenomenology ,LIGHT ,CERN LHC Coll ,photon: mixing ,Systems engineering ,Particle Physics - Experiment ,Nuclear and High Energy Physics ,CERN Lab ,accelerator ,PHI-MESON DECAYS ,Exploratory research ,FOS: Physical sciences ,dark matter ,Standard Model ,ELECTRIC-DIPOLE MOMENT ,accelerators ,VECTOR GAUGE BOSON ,SEARCH ,0103 physical sciences ,DARK-MATTER ,ddc:530 ,K: semileptonic decay ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,particle physics ,010306 general physics ,vector boson: postulated particle ,CP CONSERVATION ,beyond standard Model ,Particle Physics - Phenomenology ,lepton: universality ,photon: hidden sector ,hep-ex ,010308 nuclear & particles physics ,coupling constant ,CERN SPS ,landscape ,Accelerators and Storage Rings ,dark matter: mediation ,[PHYS.HPHE]Physics [physics]/High Energy Physics - Phenomenology [hep-ph] ,Fundamental physics ,Physics::Accelerator Physics ,axion: solar - Abstract
The Physics Beyond Colliders initiative is an exploratory study aimed at exploiting the full scientific potential of the CERN's accelerator complex and scientific infrastructures through projects complementary to the LHC and other possible future colliders. These projects will target fundamental physics questions in modern particle physics. This document presents the status of the proposals presented in the framework of the Beyond Standard Model physics working group, and explore their physics reach and the impact that CERN could have in the next 10–20 years on the international landscape., Journal of Physics G: Nuclear and Particle Physics, 47 (1), ISSN:0305-4616, ISSN:0954-3899, ISSN:1361-6471, ISSN:0954-3889 more...
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