15 results on '"C. H. Albright"'
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2. Bound-State Model of Weak and Strong Interactions
- Author
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R. Blankenbecler, Marvin L. Goldberger, and C. H. Albright
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Coupling constant ,Physics ,Meson ,Nuclear Theory ,General Physics and Astronomy ,Parity (physics) ,Elementary particle ,Vector boson ,Pseudoscalar ,Quantum mechanics ,Vector meson ,Nuclear Experiment ,Nucleon ,Caltech Library Services - Abstract
The pion-nucleon coupling constant is calculated from first principles by use of the N/D matrix method. Three models are introduced which contain pions, nucleons, and weakly interacting intermediate bosons of the scalar, pseudoscalar, and vector variety. The basic interactions are taken to be parity and isotopic spin conserving. Certain physical assumptions in the nature of boundary conditions and the known fact that the weak coupling is very weak, together with use of the Born approximation for N, enable us to obtain an eigenvalue equation which expresses the pion-nucleon coupling constant in terms of the three masses in the problem. The correct value for gπ^2 can be obtained for an intermediate vector meson of mass comparable to the nucleon mass with essentially no cutoff employed; on the other hand, the experimental value is also obtained with a spin-zero boson and a relatively small cutoff energy.
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- 1961
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3. Quark-Model Approach for the Semileptonic Reactions
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M. O. Tjia, L. S. Liu, and C. H. Albright
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Nuclear physics ,Physics ,Top quark ,Particle physics ,Strange quark ,W and Z bosons ,Up quark ,Quark model ,General Physics and Astronomy ,Down quark ,Top quark condensate ,Bottom quark - Published
- 1966
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4. On neutrino production of heavy neutral leptons
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C. H. Albright
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Physics ,Particle physics ,Muon ,Neutral current ,High Energy Physics::Phenomenology ,General Physics and Astronomy ,Nuclear physics ,Isospin ,High Energy Physics::Experiment ,Invariant mass ,Neutrino ,Nucleon ,Charged current ,Lepton - Abstract
Production of heavy neutral leptons by p -.type neutrinos is inves tigated in the framework of a strangeness-conserving neutral current model, ati the analysis is applied to the Ramm effect. The failure to observe such heavy leptons in the K-meson decay spectrum is easily understood, but the large charged current coupling strength required in the heavy lepton decay (well above the universal value) casts considerable doubt on the validity of the effect, Confirmation of the effect would suggest the existence of a new direct pion-muon interaction. (Submitted to Physics Letters B,) * Work supported in part by the U. S. Atomic Energy Commission. t Summer visitor in the Theoretical Physics Division. Permanent address: Northern Illinois University, DeKalb , Illinois 60115. The possible production of heavy leptons in high energy interactions has stimulated both theoretical and experimental interest. 132 Heavy charged leptons could be produced in pairs in high energy e + ecolliding beams or in association with their characteristic neutrinos in high energy ynucleus or enucleus interactions. On the other hand, both charged and neutral heavy leptons could be copiously produced in high energy neutrino interactions if they carry the same muon quantum number as the conventional neutrino probe v . I-1 The purpose of this note is to present some theoretical speculations on neutral heavy lepton production by p-type neutrinos. This study is prompted in part by the observations due to Ramm3 of an apparent peak in the 7~+p(npe) invariant mass spectrum produced in the 1967 CERN V~ ($) experiments. The peaks at 425 MeV suggest the production and subsequent decay of a heavy neutral lepton. This so called Ramm effect has not been highly regarded, for overwhelming evidence demonstrates that no such peaks appear in the r-p mass distribuJ tions from KL + 7rp v decays. 4 We can resolve this apparent contradiction, however, by employing a simple model. Although our analysis tends to emphasize the Ramm effect at 425 MeV, the study applies just as well to some other hypothetical heavy lepton; we select a mass of 1.2 CeV by way of example. The apparent processes in question are and VP + P +p+h” P (1) h;,a++p-. (2) The theoretical model we propose for the production process (1) couples the neutral leptons to the nucleon vertex through a weak neutral current interaction. To be sure, the existence of weakly coupled neutral currents has not been 2demonstrated to date; however, we consider the simplest model consistent with the present data as discussed previously by Albright and Oakes:5 the neutral hadron current is taken to be strangeness-conserving and simply the 3rd component of an isospin triplet. In detail, we write down the weak semileptonic Hamiltonian coupling the p -type heavy lepton according to HSL = s % [ ( Jr) ji-) + Jim) jr) + 2 go Ji3)jr) ) 1 , where Jr) (3) represents the Cabibbo current, Jh is the 3rd component of the V A octet current, and the lepton currents coupling the heavy lepton to the ordinary leptons are given by (3)
- Published
- 1972
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5. WeakN*Production and SU (6)
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L. Liu and C. H. Albright
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Physics ,Particle physics ,SU(6) ,Hyperon ,Form factor (quantum field theory) ,General Physics and Astronomy ,Production (computer science) ,Nucleon ,Resonance (particle physics) ,Group theory ,Mathematical physics ,Lepton - Abstract
A phenomenological study is made of the weak ${N}^{*}$ production process by displaying the matrix element in terms of eight form factors. Simple functional dependences are adopted for these form factors, and analytical expressions for the cross sections are given in detail. A numerical analysis is carried out to investigate the effectiveness of each form factor. Three models are proposed for this process: One assumes the dominance of a single form factor, another incorporates information obtained from ${N}^{*}$ photoproduction, and the third employs the $\mathrm{SU}(6)$ relations of B\'eg and Pais. All three models are compatible with the present experimental information, but the one derived from the $\mathrm{SU}(6)$ theory is the most encouraging.
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- 1965
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6. Coupling constants andS-matrix zeros
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W. D. McGlinn and C. H. Albright
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Physics ,Elastic scattering ,Coupling constant ,Nuclear and High Energy Physics ,Matrix (mathematics) ,Unitarity ,Position (vector) ,Mathematical analysis ,Scalar (physics) ,Astronomy and Astrophysics ,Elementary particle ,Atomic and Molecular Physics, and Optics ,S-matrix - Abstract
A connection between coupling constants andS-matrix zeros is demonstrated to exist in the case of elastic scattering of neutral, scalar particles. From analyticity and unitarity arguments, the most general solution for a partial-wave phase shift is written in terms of the given discontinuities across the dynamical and inelastic branch cuts. The coupling constants associated with the simple poles follow directly from these phase shift solutions. Under certain conditions, it is shown that the arbitrariness in the solutions can be exhibited entirely by the position and number ofS-matrix zeros. A simple dynamical assumption is introduced as an illustrative example of a possible physical restriction on these zeros, and two coupling constants are calculated with use of very rough approximations.
- Published
- 1962
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7. S-Matrix andT-matrix zeros in two static models
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C. H. Albright and W. D. McGlinn
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Physics ,Nuclear and High Energy Physics ,Unitarity ,Scalar (mathematics) ,Crossing ,Astronomy and Astrophysics ,Scattering length ,Atomic and Molecular Physics, and Optics ,Scattering amplitude ,Pseudoscalar ,Matrix (mathematics) ,Quantum mechanics ,Scalar meson ,Mathematical physics - Abstract
The dynamical assumption of a minimum ofS-matrix zeros is applied to neutral pseudoscalar and symmetric scalar meson theories in the static limit and one-meson approximation. In both models the generality in theS-matrix solutions is reduced to a one-parameter class with an upper bound on the coupling constant. A low-energy narrow resonance is admissible in theP3/2 channel for the pseudoscalar model, while only a larges-wave scattering length can appear in theT=3/2 channel for the scalar case. Crossing symmetry and unitarity are used to demonstrate that the class of solutions possessing no zeros in the scattering amplitudes is entirely contained in the class of solutions with a minimum number ofS-matrix zeros. All members of the two classes necessarily exhibit ±π/2 asymptotic phase shifts.
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- 1963
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8. Atomic Absorption Spectroscopy for Determination of ppm Quantities of Copper and Nickel in Tea
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C H Albright and Keith E Burke
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Nickel ,Materials science ,chemistry ,law ,chemistry.chemical_element ,General Chemistry ,Atomic absorption spectroscopy ,Copper ,law.invention ,Nuclear chemistry - Abstract
An atomic absorption spectroscopic method is described for the quantitative determination of 0.0005–0.01% (5–100 ppm) copper and nickel in tea. After acid decomposition of the organic material, the sample is aspirated into an air-acetylene flame. Radiation at 324.7 nm from a copper hollow cathode is passed through the flame, and the attenuation is measured. The measurement is also made with radiation at 232.0 nm with a nickel hollow cathode. The spectrophotometer is calibrated with known concentrations of copper and nickel in the presence of a matrix similar to that of the samples. The method is applicable to all teas regardless of their geographical origin. Results from 7 collaborators on 6 samples are given. For one sample from 7 collaborators the following mean standard deviations were obtained for 32 determinations: copper 19.5±1.7 ppm and nickel 26.0±1.0 ppm. The method has been adopted as official first action.
- Published
- 1971
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9. Spectral-function sum rules and finite-meson-mass corrections
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C. H. Albright, P. R. Auvil, and N. G. Deshpande
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Physics ,Scattering amplitude ,Pseudoscalar ,Particle physics ,Meson ,Scattering ,Rule of sum ,Elementary particle ,Production (computer science) ,Lepton - Published
- 1967
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10. Weakly Coupled Neutral Currents
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C. H. Albright and R. J. Oakes
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Physics ,Atomic physics - Published
- 1970
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11. Atomic Absorption Spectrometric Determination of Copper and Nickel in Tea
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C H Albright and Keith E Burke
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Nickel ,chemistry ,law ,Analytical chemistry ,chemistry.chemical_element ,General Chemistry ,Absorption (chemistry) ,Atomic absorption spectroscopy ,Copper ,Nuclear chemistry ,law.invention - Abstract
Atomic absorption spectroscopy is one of several analytical tools which can be applied to the determination of less than 20 ppm quantities of copper and nickel in tea. A rapid and accurate atomic absorption method is described which is sensitive to these elements at the levels of interest. After the decomposition of organic matter by oxidation with nitric and perchloric acids, or by dry ashing, a solution is obtained which contains only a few major elements. An average matrix composition is determined and synthetic standards for copper and nickel which are free of potential interferences are prepared for a calibration curve. Tea leaves have been analyzed chemically and by X-ray and optical emission spectroscopy in order to evaluate the accuracy of the atomic absorption method. The average of 50 determinations gives a mean of 11 ppm nickel and 32 ppm copper with standard deviations of ±1.6 σ and 1.8 σ, respectively. The method should be applicable to most organic material.
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- 1970
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12. Renormalization of a parity non-conserving theory
- Author
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C. H. Albright, R. Haag, and Sam Treiman
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Physics ,Nuclear and High Energy Physics ,Conservation law ,High Energy Physics::Lattice ,Perturbation (astronomy) ,Astronomy and Astrophysics ,Parity (physics) ,Atomic and Molecular Physics, and Optics ,Renormalization ,Quantum mechanics ,Functional renormalization group ,Condensed Matter::Strongly Correlated Electrons ,Critical dimension ,Mathematical physics - Abstract
A renormalization of Sekine's work on the construction of a parity non- conserving theory involving renormalization constants is given for the lowest order perturbation approximations. (C.J.G.)
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- 1959
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13. The Use of Ammonium Perchlorate with the Hydrogen-Argon-Entrained Air Flame in Atomic Absorption Spectroscopy
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Keith E. Burke and C H Albright
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inorganic chemicals ,Hydrogen ,Flame test ,Inorganic chemistry ,chemistry.chemical_element ,Zinc ,Ammonium perchlorate ,Copper ,humanities ,Nickel ,chemistry.chemical_compound ,fluids and secretions ,Antimony ,chemistry ,Cobalt ,reproductive and urinary physiology - Abstract
The use of ammonium perchlorate increased the usefulness of the hydrogenargon-entrained air (H2AA) flame. Arsenic, lead, tin, copper, bismuth, cobalt, iron, nickel, antimony, zinc, and selenium were studied. Copper, cobalt, iron, and nickel gave no signal in the relatively low temperature of the H2AA flame. The presence of ammonium perchlorate produced a signal which allowed these elements to be readily detected with a response greater than is obtained with an acetylene-air flame. The presence of a copper, iron, or nickel matrix obliterates the signal from elements studied in the H2AA flame. The presence of ammonium perchlorate does not completely eliminate the matrix effect.
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- 1970
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14. The DUNE Far Detector Interim Design Report Volume 1: Physics, Technology and Strategies
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DUNE Collaboration, B. Abi, R. Acciarri, M. A. Acero, M. Adamowski, C. Adams, D. Adams, P. Adamson, M. Adinolfi, Z. Ahmad, C. H. Albright, L. Aliaga Soplin, T. Alion, S. Alonso Monsalve, M. Alrashed, C. Alt, J. Anderson, K. Anderson, C. Andreopoulos, M. P. Andrews, R. A. Andrews, A. Ankowski, J. Anthony, M. Antonello, M. Antonova, S. Antusch, A. Aranda Fernandez, A. Ariga, T. Ariga, D. Aristizabal Sierra, E. Arrieta Diaz, J. Asaadi, M. Ascencio, D. Asner, M. S. Athar, M. Auger, A. Aurisano, V. Aushev, D. Autiero, F. Azfar, A. Back, H. Back, J. Back, C. Backhouse, P. Baesso, L. Bagby, X. Bai, M. Baird, B. Balantekin, S. Balasubramanian, B. Baller, P. Ballett, L. Balleyguier, B. Bambah, H. Band, M. Bansal, S. Bansal, G. Barenboim, G. J. Barker, C. Barnes, G. Barr, J. Barranco Monarca, N. Barros, J. Barrow, A. Bashyal, V. Basque, M. Bass, F. Bay, K. Bays, J. L. Bazo, J. F. Beacom, E. Bechetoille, B. R. Behera, L. Bellantoni, G. Bellettini, V. Bellini, O. Beltramello, D. Belver, N. Benekos, P. A. Benetti, A. Bercellie, E. Berman, P. Bernardini, R. Berner, H. G. Berns, R. H. Bernstein, S. Bertolucci, M. Betancourt, V. Bhatnagar, M. Bhattacharjee, B. Bhuyan, S. Biagi, J. Bian, K. Biery, B. Bilki, M. Bishai, A. Bitadze, T. Blackburn, A. Blake, B. Blanco Siffert, F. Blaszczyk, E. Blaufuss, G. C. Blazey, M. Blennow, E. Blucher, V. Bocean, F. Boffelli, J. Boissevain, S. Bolognesi, T. Bolton, M. Bonesini, T. Boone, A. Booth, C. Booth, S. Bordoni, A. Borkum, T. Boschi, P. Bour, B. Bourguille, S. B. Boyd, D. Boyden, J. Bracinik, D. Brailsford, A. Brandt, J. Bremer, S. J. Brice, C. Bromberg, G. Brooijmans, J. Brooke, G. Brown, N. Buchanan, H. Budd, P. C. de Holanda, T. Cai, D. Caiulo, P. Calafiura, A. Calatayud, J. Calcutt, C. Callahan, E. Calligarich, E. Calvo, L. Camilleri, A. Caminata, M. Campanelli, G. Cancelo, K. Cankocak, C. Cantini, D. Caratelli, B. Carlus, M. Carneiro, I. Caro Terrazas, T. J. Carroll, M. P. Carvallo, M. Cascella, C. Castromonte, E. Catano-Mur, M. Cavalli-Sforza, F. Cavanna, E. Cazzato, S. Centro, G. Cerati, A. Cervelli, A. Cervera Villanueva, T. Cervi, M. Chalifour, A. Chappuis, A. Chatterjee, S. Chattopadhyay, J. Chaves, H. Chen, M. -C. Chen, S. Chen, D. Cherdack, C. -Y. Chi, S. Childress, K. Cho, S. Choubey, B. C. Choudhary, A. Christensen, D. Christian, G. Christodoulou, C. -A. Christofferson, E. Church, P. Clarke, T. E. Coan, A. Cocco, G. H. Collin, E. Conley, J. M. Conrad, M. Convery, R. Corey, L. Corwin, P. Cotte, L. Cremonesi, J. I. Crespo-Anadón, J. Creus Prats, E. Cristaldo, P. Crivelli, D. Cronin-Hennessy, C. Crowley, C. Cuesta, A. Curioni, D. Cussans, M. Dabrowski, D. Dale, H. Da Motta, T. Davenne, E. Davenport, G. S. Davies, J. Davies, S. Davini, J. Dawson, K. De, M. P. Decowski, P. Dedin Neto, I. de Icaza Astiz, A. Delbart, D. Delepine, M. Delgado, A. Dell, J. de Mello Neto, D. DeMuth, Z. Deng, S. Dennis, C. Densham, I. De Bonis, A. De Gouvêa, P. De Jong, P. De Lurgio, S. De Rijck, A. De Roeck, J. J. de Vries, R. Dharmapalan, N. Dhingra, M. Diamantopoulou, F. Diaz, J. S. Díaz, G. Diaz Bautista, P. Ding, C. Distefano, M. Diwan, S. Di Domizio, L. Di Giulio, S. Di Luise, Z. Djurcic, F. Doizon, N. Dokania, M. J. Dolinski, R. Dong, J. dos Anjos, D. Douglas, G. Drake, D. Duchesneau, K. Duffy, B. Dung, D. Dutta, M. Duvernois, H. Duyang, O. Dvornikov, D. A. Dwyer, S. Dye, A. S. Dyshkant, S. Dytman, M. Eads, B. Eberly, D. Edmunds, J. Eisch, A. Elagin, S. Elliott, W. Ellsworth, M. Elnimr, S. Emery, S. Eno, A. Ereditato, C. O. Escobar, L. Escudero Sanchez, J. J. Evans, A. Ezeribe, K. Fahey, A. Falcone, L. Falk, A. Farbin, C. Farnese, Y. Farzan, M. Fasoli, A. Fava, J. Felix, E. Fernandez-Martinez, P. Fernandez Menendez, F. Ferraro, F. Feyzi, L. Fields, A. Filkins, F. Filthaut, A. Finch, O. Fischer, M. Fitton, R. Fitzpatrick, W. Flanagan, B. T. Fleming, R. Flight, T. Forest, J. Fowler, W. Fox, J. Franc, K. Francis, P. Franchini, D. Franco, J. Freeman, J. Freestone, J. Fried, A. Friedland, S. Fuess, I. Furic, A. Furmanski, A. M. Gago, H. Gallagher, A. Gallego-Ros, V. Galymov, E. Gamberini, S. Gambetta, T. Gamble, R. Gandhi, R. Gandrajula, S. Gao, D. Garcia-Gamez, S. Gardiner, D. Gastler, J. Gehrlein, B. Gelli, A. Gendotti, Z. Ghorbani-Moghaddam, A. Ghosh, D. Gibin, I. Gil-Botella, C. Girerd, A. K. Giri, S. Glavin, D. Goeldi, O. Gogota, M. Gold, S. Gollapinni, K. Gollwitzer, R. A. Gomes, L. Gomez, L. V. Gomez Bermeo, J. J. Gomez Cadenas, H. Gong, F. Gonnella, J. A. Gonzalez-Cuevas, M. Goodman, O. Goodwin, D. Gorbunov, S. Goswami, E. Goudzovski, C. Grace, N. Graf, M. Graham, E. Gramellini, R. Gran, A. Grant, C. Grant, N. Grant, V. Greco, S. Green, H. Greenlee, L. Greenler, M. Greenwood, J. Greer, W. C. Griffith, M. Groh, J. Grudzinski, K. Grzelak, G. Guanghua, E. Guardincerri, V. Guarino, G. P. Guedes, R. Guenette, A. Guglielmi, B. Guo, S. Gupta, V. Gupta, K. K. Guthikonda, R. Gutierrez, P. Guzowski, M. M. Guzzo, A. Habig, R. W. Hackenburg, A. Hackenburg, B. Hackett, H. Hadavand, R. Haenni, A. Hahn, J. Haigh, T. Haines, J. Haiston, T. Hamernik, P. Hamilton, J. Han, T. Handler, S. Hans, D. A. Harris, J. Hartnell, T. Hasegawa, R. Hatcher, A. Hatzikoutelis, S. Hays, E. Hazen, M. Headley, A. Heavey, K. Heegerv, J. Heise, K. Hennessy, S. Henry, A. Hernandez, J. Hernandez-Garcia, K. Herner, J. Hewes, J. Hignight, A. Higuera, T. Hill, S. Hillier, A. Himmel, C. Hohl, A. Holin, E. Hoppe, S. Horikawa, G. Horton-Smith, M. Hostert, A. Hourlier, B. Howard, R. Howell, J. Huang, J. Hugon, P. Hurh, J. Hylen, R. Illingworth, J. Insler, G. Introzzi, A. Ioannisian, A. Izmaylov, D. E. Jaffe, C. James, E. James, C. -H. Jang, F. Jediny, Y. S. Jeong, A. Jhingan, W. Ji, A. Jipa, S. Jiménez, C. Johnson, M. Johnson, R. Johnson, J. Johnstone, B. Jones, S. Jones, J. Joshi, H. Jostlein, C. K. Jung, T. Junk, A. Kaboth, I. Kadenko, F. Kamiya, Y. Kamyshkov, G. Karagiorgi, D. Karasavvas, Y. Karyotakis, S. Kasai, S. Kasetti, K. Kaur, B. Kayser, N. Kazaryan, E. Kearns, P. Keener, E. Kemp, C. Kendziora, W. Ketchum, S. H. Kettell, M. Khabibullin, A. Khotjantsev, D. Kim, B. Kirby, M. Kirby, J. Klein, Y. -J. Ko, T. Kobilarcik, B. Kocaman, L. W. Koerner, S. Kohn, G. Koizumi, P. Koller, A. Kopylov, M. Kordosky, L. Kormos, T. Kosc, U. Kose, V. A. Kostelecký, K. Kothekar, M. Kramer, F. Krennrich, I. Kreslo, K. Kriesel, W. Kropp, Y. Kudenko, V. A. Kudryavtsev, S. Kulagin, J. Kumar, L. Kumar, A. Kumar, S. Kumbhare, C. Kuruppu, V. Kus, T. Kutter, R. LaZur, K. Lande, C. Lane, K. Lang, T. Langford, F. Lanni, P. Lasorak, D. Last, C. Lastoria, A. Laundrie, I. Lazanu, T. Le, J. Learned, P. Lebrun, D. Lee, G. Lehmann Miotto, M. A. Leigui de Oliveira, Q. Li, S. Li, S. W. Li, X. Li, Y. Li, Z. Li, H. -Y. Liao, S. -K. Lin, C-J. S. Lin, R. Linehan, V. Linhart, J. Link, Z. Liptak, D. Lissauer, L. Littenberg, B. Littlejohn, J. Liu, T. Liu, L. LoMonaco, J. M. LoSecco, S. Lockwitz, N. Lockyer, T. Loew, M. Lokajicek, K. Long, K. Loo, J. P. Lopez, D. Lorca, T. Lord, M. Losada, W. C. Louis, M. Luethi, K. -B. Luk, T. Lundin, X. Luo, N. Lurkin, T. Lux, V. P. Luzio, J. Lykken, J. Maalampi, R. MacLellan, A. A. Machado, P. Machado, C. T. Macias, J. Macier, P. Madigan, S. Magill, G. Mahler, K. Mahn, M. Malek, J. A. Maloney, F. Mammoliti, S. K. Mandal, G. Mandrioli, L. Manenti, S. Manly, A. Mann, A. Marchionni, W. Marciano, S. Marcocci, D. Marfatia, C. Mariani, J. Maricic, F. Marinho, A. D. Marino, M. Marshak, C. Marshall, J. Marshall, J. Marteau, J. Martin-Albo, D. Martinez, N. Martinez, H. Martinez, K. Mason, A. Mastbaum, M. Masud, H. Mathez, S. Matsuno, J. Matthews, C. Mauger, N. Mauri, K. Mavrokoridis, R. Mazza, A. Mazzacane, E. Mazzucato, N. McCauley, E. McCluskey, N. McConkey, K. McDonald, K. S. McFarland, C. McGivern, A. McGowan, C. McGrew, R. McKeown, A. McNab, D. McNulty, R. McTaggart, V. Meddage, A. Mefodiev, P. Mehta, D. Mei, O. Mena, S. Menary, H. Mendez, D. P. Mendez, A. Menegolli, G. Meng, M. Messier, W. Metcalf, M. Mewes, H. Meyer, T. Miao, J. Migenda, R. Milincic, J. Miller, W. Miller, J. Mills, C. Milne, O. Mineev, O. Miranda, C. S. Mishra, S. R. Mishra, A. Mislivec, B. Mitrica, D. Mladenov, I. Mocioiu, K. Moffat, N. Moggi, R. Mohanta, N. Mokhov, J. Molina, L. Molina Bueno, A. Montanari, C. Montanari, D. Montanari, L. Montano Zetina, J. Moon, M. Mooney, C. Moore, D. Moreno, B. Morgan, G. F. Moroni, C. Morris, W. Morse, C. Mossey, C. A. Moura, J. Mousseau, L. Mualem, M. Muether, S. Mufson, F. Muheim, H. Muramatsu, S. Murphy, J. Musser, J. Nachtman, M. Nalbandyan, R. Nandakumar, D. Naples, S. Narita, G. Navarro, J. Navarro, D. Navas-Nicolás, N. Nayak, M. Nebot-Guinot, M. Needham, K. Negishi, J. Nelson, M. Nessi, D. Newbold, M. Newcomer, R. Nichol, T. C. Nicholls, E. Niner, A. Norman, B. Norris, J. Norris, P. Novella, E. Nowak, J. Nowak, M. S. Nunes, H. O'Keeffe, M. Oberling, A. Olivares Del Campo, A. Olivier, Y. Onel, Y. Onishchuk, T. Ovsjannikova, S. Ozturk, L. Pagani, S. Pakvasa, O. Palamara, J. Paley, M. Pallavicini, C. Palomares, J. Palomino, E. Pantic, A. Paolo, V. Paolone, V. Papadimitriou, R. Papaleo, S. Paramesvaran, J. Park, S. Parke, Z. Parsa, S. Pascoli, J. Pasternak, J. Pater, L. Patrizii, R. B. Patterson, S. J. Patton, T. Patzak, A. Paudel, B. Paulos, L. Paulucci, Z. Pavlovic, G. Pawloski, P. Payam, D. Payne, V. Pec, S. J. M. Peeters, E. Pennacchio, A. Penzo, G. N. Perdue, O. l. G. Peres, L. Periale, K. Petridis, G. Petrillo, R. Petti, P. Picchi, L. Pickering, F. Pietropaolo, J. Pillow, P. Plonski, R. Plunkett, R. Poling, X. Pons, N. Poonthottathil, M. Popovic, R. Pordes, S. Pordes, M. Potekhin, R. Potenza, B. Potukuchi, S. Poudel, J. Pozimski, M. Pozzato, T. Prakasj, R. Preece, O. Prokofiev, N. Pruthi, P. Przewlocki, F. Psihas, D. PugnËre, D. Pushka, K. Qi, X. Qian, J. L. Raaf, R. Raboanary, V. Radeka, J. Rademacker, V. Radescu, B. Radics, A. Radovic, A. Rafique, M. Rajaoalisoa, I. Rakhno, H. T. Rakotondramanana, L. Rakotondravohitra, Y. A. Ramachers, R. A. Rameika, M. A. Ramirez Delgado, J. Ramsey, B. J. Ramson, A. Rappoldi, G. L. Raselli, P. Ratoff, S. Ravat, O. Ravinez, H. Razafinime, B. Rebel, D. Redondo, C. Regenfus, M. Reggiani-Guzzo, T. Rehak, J. Reichenbacher, D. Reitzner, M. H. Reno, A. Renshaw, S. Rescia, F. Resnati, A. Reynolds, G. Riccobene, L. C. J. Rice, K. Rielage, K. Riesselmann, Y. -A. Rigaut, D. Rivera, L. Rochester, M. Roda, P. Rodrigues, M. J. Rodriguez Alonso, B. Roe, A. J. Roeth, R. M. Roser, M. Ross-Lonergan, M. Rossella, J. Rout, S. Roy, A. Rubbia, C. Rubbia, R. Rucinski, B. Russell, J. Russell, D. Ruterbories, M. R. Vagins, R. Saakyan, N. Sahu, P. Sala, G. Salukvadze, N. Samios, F. Sanchez, M. C. Sanchez, C. Sandoval, B. Sands, S. U. Sankar, S. Santana, L. M. Santos, G. Santucci, N. Saoulidou, P. Sapienza, C. Sarasty, I. Sarcevic, G. Savage, A. Scaramelli, A. Scarpelli, T. Schaffer, H. Schellman, P. Schlabach, C. M. Schloesser, D. W. Schmitz, J. Schneps, K. Scholberg, A. Schukraft, E. Segreto, S. Sehrawat, J. Sensenig, I. Seong, J. A. Sepulveda-Quiroz, A. Sergi, F. Sergiampietri, D. Sessumes, K. Sexton, L. Sexton-Kennedy, D. Sgalaberna, M. H. Shaevitz, S. Shafaq, J. S. Shahi, S. Shahsavarani, P. Shanahan, H. R. Sharma, R. Sharma, R. K. Sharma, T. Shaw, S. Shin, I. Shoemaker, D. Shooltz, R. Shrock, N. Simos, J. Sinclair, G. Sinev, V. Singh, J. Singh, I. Singh, R. Sipos, F. W. Sippach, G. Sirri, K. Siyeon, D. Smargianaki, A. Smith, E. Smith, P. Smith, J. Smolik, M. Smy, E. L. Snider, P. Snopok, J. Sobczyk, H. Sobel, M. Soderberg, C. J. Solano Salinas, S. Söldner-Rembold, N. Solomey, W. Sondheim, M. Sorel, J. A. Soto-Oton, A. Sousa, K. Soustruznik, F. Spagliardi, M. Spanu, J. Spitz, N. J. C. Spooner, R. Staley, M. Stancari, L. Stanco, A. Stefanik, H. M. Steiner, J. Stewart, J. Stock, F. Stocker, S. Stoica, J. Stone, J. Strait, M. Strait, T. Strauss, S. Striganov, A. Stuart, G. Sullivan, M. Sultana, Y. Sun, A. Surdo, V. Susic, L. Suter, C. M. Sutera, R. Svoboda, B. Szczerbinska, A. M. Szelc, N. Tagg, R. Talaga, H. Tanaka, B. Tapia Oregui, S. Tariq, E. Tatar, R. Tayloe, M. Tenti, K. Terao, C. A. Ternes, F. Terranova, G. Testera, A. Thea, L. F. Thompson, J. Thompson, C. Thorn, A. Timilsina, S. C. Timm, J. Todd, A. Tonazzo, T. Tope, D. Torbunov, M. Torti, M. Tórtola, F. Tortorici, M. Toups, C. Touramanis, J. Trevor, M. Tripathi, W. Tromeur, I. Tropin, W. H. Trzaska, Y. -T. Tsai, K. V. Tsang, A. Tsaris, S. Tufanli, C. Tull, J. Turner, M. Tzanov, E. Tziaferi, Y. Uchida, J. Urheim, T. Usher, G. A. Valdiviesso, E. Valencia, L. Valerio, Z. Vallari, J. W. F. Valle, R. Van Berg, R. Van de Water, F. Varanini, G. Varner, J. Vasel, G. Vasseur, K. Vaziri, G. Velev, S. Ventura, A. Verdugo, M. Vermeulen, E. Vernon, M. Verzocchi, T. Viant, C. Vignoli, S. Vihonen, C. Vilela, B. Viren, P. Vokac, T. Vrba, T. Wachala, D. Wahl, M. Wallbank, H. Wang, J. Wang, T. -C. Wang, B. Wang, Y. Wang, Z. Wang, K. Warburton, D. Warner, M. O. Wascko, D. Waters, A. Watson, A. Weber, M. Weber, H. Wei, W. Wei, A. Weinstein, D. Wenman, M. Wetstein, M. While, A. White, L. H. Whitehead, D. Whittington, K. Wierman, M. Wilking, C. Wilkinson, J. Willhite, Z. Williams, R. J. Wilson, P. Wilson, P. Wittich, J. Wolcott, T. Wongjirad, K. Wood, L. Wood, E. Worcester, M. Worcester, S. Wu, W. Wu, W. Xu, C. Yanagisawa, S. Yang, T. Yang, G. Yang, J. Ye, M. Yeh, N. Yershov, K. Yonehara, L. Yoshimura, B. Yu, J. Yu, J. Zalesak, L. Zambelli, B. Zamorano, A. Zani, K. Zaremba, L. Zazueta, G. P. Zeller, J. Zennamo, C. Zhang, M. Zhao, Y. -L. Zhou, G. Zhu, E. D. Zimmerman, M. Zito, S. Zucchelli, J. Zuklin, V. Zutshi, R. Zwaska, 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 sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, 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), AstroParticule et Cosmologie (APC (UMR_7164)), 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), DUNE, 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), Laboratoire d'Annecy de Physique des Particules (LAPP), 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 de Paris (UP), Collaboration, D, Abi, B, Acciarri, R, Acero, M, Adamowski, M, Adams, C, Adams, D, Adamson, P, Adinolfi, M, Ahmad, Z, Albright, C, Aliaga Soplin, L, Alion, T, Alonso Monsalve, S, Alrashed, M, Alt, C, Anderson, J, Anderson, K, Andreopoulos, C, Andrews, M, Andrews, R, Ankowski, A, Anthony, J, Antonello, M, Antonova, M, Antusch, S, Aranda Fernandez, A, Ariga, A, Ariga, T, Aristizabal Sierra, D, Arrieta Diaz, E, Asaadi, J, Ascencio, M, Asner, D, Athar, M, Auger, M, Aurisano, A, Aushev, V, Autiero, D, Azfar, F, Back, A, Back, H, Back, J, Backhouse, C, Baesso, P, Bagby, L, Bai, X, Baird, M, Balantekin, B, Balasubramanian, S, Baller, B, Ballett, P, Balleyguier, L, Bambah, B, Band, H, Bansal, M, Bansal, S, Barenboim, G, Barker, G, Barnes, C, Barr, G, Barranco Monarca, J, Barros, N, Barrow, J, Bashyal, A, Basque, V, Bass, M, Bay, F, Bays, K, Bazo, J, Beacom, J, Bechetoille, E, Behera, B, Bellantoni, L, Bellettini, G, Bellini, V, Beltramello, O, Belver, D, Benekos, N, Benetti, P, Bercellie, A, Berman, E, Bernardini, P, Berner, R, Berns, H, Bernstein, R, Bertolucci, S, Betancourt, M, Bhatnagar, V, Bhattacharjee, M, Bhuyan, B, Biagi, S, Bian, J, Biery, K, Bilki, B, Bishai, M, Bitadze, A, Blackburn, T, Blake, A, Blanco Siffert, B, Blaszczyk, F, Blaufuss, E, Blazey, G, Blennow, M, Blucher, E, Bocean, V, Boffelli, F, Boissevain, J, Bolognesi, S, Bolton, T, Bonesini, M, Boone, T, Booth, A, Booth, C, Bordoni, S, Borkum, A, Boschi, T, Bour, P, Bourguille, B, Boyd, S, Boyden, D, Bracinik, J, Brailsford, D, Brandt, A, Bremer, J, Brice, S, Bromberg, C, Brooijmans, G, Brooke, J, Brown, G, Buchanan, N, Budd, H, de Holanda, P, Cai, T, Caiulo, D, Calafiura, P, Calatayud, A, Calcutt, J, Callahan, C, Calligarich, E, Calvo, E, Camilleri, L, Caminata, A, Campanelli, M, Cancelo, G, Cankocak, K, Cantini, C, Caratelli, D, Carlus, B, Carneiro, M, Caro Terrazas, I, Carroll, T, Carvallo, M, Cascella, M, Castromonte, C, Catano-Mur, E, Cavalli-Sforza, M, Cavanna, F, Cazzato, E, Centro, S, Cerati, G, Cervelli, A, Cervera Villanueva, A, Cervi, T, Chalifour, M, Chappuis, A, Chatterjee, A, Chattopadhyay, S, Chaves, J, Chen, H, Chen, M, Chen, S, Cherdack, D, Chi, C, Childress, S, Cho, K, Choubey, S, Choudhary, B, Christensen, A, Christian, D, Christodoulou, G, Christofferson, C, Church, E, Clarke, P, Coan, T, Cocco, A, Collin, G, Conley, E, Conrad, J, Convery, M, Corey, R, Corwin, L, Cotte, P, Cremonesi, L, Crespo-Anadón, J, Creus Prats, J, Cristaldo, E, Crivelli, P, Cronin-Hennessy, D, Crowley, C, Cuesta, C, Curioni, A, Cussans, D, Dabrowski, M, Dale, D, Da Motta, H, Davenne, T, Davenport, E, Davies, G, Davies, J, Davini, S, Dawson, J, De, K, Decowski, M, Dedin Neto, P, de Icaza Astiz, I, Delbart, A, Delepine, D, Delgado, M, Dell, A, de Mello Neto, J, Demuth, D, Deng, Z, Dennis, S, Densham, C, De Bonis, I, De Gouvêa, A, De Jong, P, De Lurgio, P, De Rijck, S, De Roeck, A, de Vries, J, Dharmapalan, R, Dhingra, N, Diamantopoulou, M, Diaz, F, Díaz, J, Diaz Bautista, G, Ding, P, Distefano, C, Diwan, M, Di Domizio, S, Di Giulio, L, Di Luise, S, Djurcic, Z, Doizon, F, Dokania, N, Dolinski, M, Dong, R, dos Anjos, J, Douglas, D, Drake, G, Duchesneau, D, Duffy, K, Dung, B, Dutta, D, Duvernois, M, 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Musser, J, Nachtman, J, Nalbandyan, M, Nandakumar, R, Naples, D, Narita, S, Navarro, G, Navarro, J, Navas-Nicolás, D, Nayak, N, Nebot-Guinot, M, Needham, M, Negishi, K, Nelson, J, Nessi, M, Newbold, D, Newcomer, M, Nichol, R, Nicholls, T, Niner, E, Norman, A, Norris, B, Norris, J, Novella, P, Nowak, E, Nowak, J, Nunes, M, O'Keeffe, H, Oberling, M, Olivares Del Campo, A, Olivier, A, Onel, Y, Onishchuk, Y, Ovsjannikova, T, Ozturk, S, Pagani, L, Pakvasa, S, Palamara, O, Paley, J, Pallavicini, M, Palomares, C, Palomino, J, Pantic, E, Paolo, A, Paolone, V, Papadimitriou, V, Papaleo, R, Paramesvaran, S, Park, J, Parke, S, Parsa, Z, Pascoli, S, Pasternak, J, Pater, J, Patrizii, L, Patterson, R, Patton, S, Patzak, T, Paudel, A, Paulos, B, Paulucci, L, Pavlovic, Z, Pawloski, G, Payam, P, Payne, D, Pec, V, Peeters, S, Pennacchio, E, Penzo, A, Perdue, G, Peres, O, Periale, L, Petridis, K, Petrillo, G, Petti, R, Picchi, P, Pickering, L, Pietropaolo, F, Pillow, J, Plonski, P, Plunkett, R, Poling, R, Pons, X, Poonthottathil, N, Popovic, M, Pordes, R, Pordes, S, Potekhin, M, Potenza, R, Potukuchi, B, Poudel, S, Pozimski, J, Pozzato, M, Prakasj, T, Preece, R, Prokofiev, O, Pruthi, N, Przewlocki, P, Psihas, F, Pugnëre, D, Pushka, D, Qi, K, Qian, X, Raaf, J, Raboanary, R, Radeka, V, Rademacker, J, Radescu, V, Radics, B, Radovic, A, Rafique, A, Rajaoalisoa, M, Rakhno, I, Rakotondramanana, H, Rakotondravohitra, L, Ramachers, Y, Rameika, R, Ramirez Delgado, M, Ramsey, J, Ramson, B, Rappoldi, A, Raselli, G, Ratoff, P, Ravat, S, Ravinez, O, Razafinime, H, Rebel, B, Redondo, D, Regenfus, C, Reggiani-Guzzo, M, Rehak, T, Reichenbacher, J, Reitzner, D, Reno, M, Renshaw, A, Rescia, S, Resnati, F, Reynolds, A, Riccobene, G, Rice, L, Rielage, K, Riesselmann, K, Rigaut, Y, Rivera, D, Rochester, L, Roda, M, Rodrigues, P, Rodriguez Alonso, M, Roe, B, Roeth, A, Roser, R, Ross-Lonergan, M, Rossella, M, Rout, J, Roy, S, Rubbia, A, Rubbia, C, Rucinski, R, Russell, B, Russell, J, Ruterbories, D, 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National de la Recherche Scientifique (CNRS)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Observatoire de Paris, PSL Research University (PSL)-PSL Research University (PSL)-Université Paris Diderot - Paris 7 (UPD7), and Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS)-Université Paris Cité (UPCité)
- Subjects
detector: technology ,Physics - Instrumentation and Detectors ,nucleon: decay ,[PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex] ,far detector ,FOS: Physical sciences ,01 natural sciences ,programming ,High Energy Physics - Experiment ,High Energy Physics - Experiment (hep-ex) ,mass: hierarchy ,Interim ,0103 physical sciences ,Milestone (project management) ,CP: violation ,[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex] ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,Detectors and Experimental Techniques ,010306 general physics ,physics.ins-det ,detector: design ,activity report ,Executive summary ,010308 nuclear & particles physics ,hep-ex ,Detector ,Volume (computing) ,bibliography ,Instrumentation and Detectors (physics.ins-det) ,calibration ,deep underground detector ,neutrino: detector ,[PHYS.PHYS.PHYS-INS-DET] Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,Fundamental physics ,Systems engineering ,Organizational structure ,Physics - Instrumentation and Detector ,neutrino: oscillation ,numerical calculations: Monte Carlo ,Particle Physics - Experiment ,PATH (variable) - Abstract
The DUNE IDR describes the proposed physics program and technical designs of the DUNE Far Detector modules in preparation for the full TDR to be published in 2019. It is intended as an intermediate milestone on the path to a full TDR, justifying the technical choices that flow down from the high-level physics goals through requirements at all levels of the Project. These design choices will enable the DUNE experiment to make the ground-breaking discoveries that will help to answer fundamental physics questions. Volume 1 contains an executive summary that describes the general aims of this document. The remainder of this first volume provides a more detailed description of the DUNE physics program that drives the choice of detector technologies. It also includes concise outlines of two overarching systems that have not yet evolved to consortium structures: computing and calibration. Volumes 2 and 3 of this IDR describe, for the single-phase and dual-phase technologies, respectively, each detector module's subsystems, the technical coordination required for its design, construction, installation, and integration, and its organizational structure., Comment: 83 pages, 11 figures
15. Isospin Structure of the Nonleptonic Weak Hamiltonian
- Author
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R. J. Oakes and C. H. Albright
- Subjects
Physics ,Hamiltonian mechanics ,symbols.namesake ,Weak isospin ,Cabibbo–Kobayashi–Maskawa matrix ,Isospin ,Quantum mechanics ,symbols ,Elementary particle ,Hamiltonian (quantum mechanics) - Published
- 1971
- Full Text
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