12 results on '"Caron, J. -F."'
Search Results
2. The NEWS-G detector at SNOLAB
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Balogh, L., Beaufort, C., Brossard, A., Caron, J. F., Chapellier, M., Coquillat, J. M., Corcoran, E. C., Crawford, S., Dastgheibi-Fard, A., Deng, Y., Dering, K., Durnford, D., Garrah, C., Gerbier, G., Giomataris, I., Giroux, G., Gorel, P., Gros, M., Gros, P., Guillaudin, O., Hoppe, E. W., Katsioulas, I., Kelly, F., Knights, P., Kwon, L., Langrock, S., Lautridou, P., Martin, R. D., Mols, J. P., Muraz, J. F., Nikolopoulos, K., O'Brien, P., Piro, M. C., Rowe, N., Santos, D., Samuleev, P., Savvidis, G., Savvidis, I., Fernandez, F. Vazquez deSola, Vidal, M., and Zampaolo, M.
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Physics - Instrumentation and Detectors - Abstract
The New Experiments With Spheres-Gas (NEWS-G) collaboration intends to achieve $\mathrm{sub-GeV/c^{2}}$ Weakly Interacting Massive Particles (WIMPs) detection using Spherical Proportional Counters (SPCs). SPCs are gaseous detectors relying on ionization with a single ionization electron energy threshold. The latest generation of SPC for direct dark matter searches has been installed at SNOLAB in Canada in 2021. This article details the different processes involved in the fabrication of the NEWS-G experiment. Also outlined in this paper are the mitigation strategies, measurements of radioactivity of the different components, and estimations of induced background event rates that were used to quantify and address detector backgrounds., Comment: 18 pages, 9 figures, 5 tables, to be published
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- 2022
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3. EXCESS workshop: Descriptions of rising low-energy spectra
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Adari, P., Aguilar-Arevalo, A., Amidei, D., Angloher, G., Armengaud, E., Augier, C., Balogh, L., Banik, S., Baxter, D., Beaufort, C., Beaulieu, G., Belov, V., Gal, Y. Ben, Benato, G., Benoît, A., Bento, A., Bergé, L., Bertolini, A., Bhattacharyya, R., Billard, J., Bloch, I. M., Botti, A., Breier, R., Bres, G., Bret, J-. L., Broniatowski, A., Brossard, A., Bucci, C., Bunker, R., Cababie, M., Calvo, M., Camus, P., Cancelo, G., Canonica, L., Cappella, F., Cardani, L., Caron, J. -F., Casali, N., del Castello, G., Cazes, A., Cerulli, R., Vergara, B. A. Cervantes, Chaize, D., Chapellier, M., Chaplinsky, L., Charlieux, F., Chaudhuri, M., Chavarria, A. E., Chemin, G., Chen, R., Chen, H., Chierchie, F., Colantoni, I., Colas, J., Cooley, J., Coquillat, J. -M., Corcoran, E. C., Crawford, S., Crisler, M., Cruciani, A., Cushman, P., D'Addabbo, A., D'Olivo, J. C., Dastgheibi-Fard, A., De Jésus, M., Deng, Y., Dent, J. B., Depaoli, E. L., Dering, K., Dharani, S., Di Lorenzo, S., Drlica-Wagner, A., Dumoulin, L., Durnford, D., Dutta, B., Einfalt, L., Erb, A., Erhart, A., Essig, R., Estrada, J., Etzion, E., Exshaw, O., Favela-Perez, F., Feilitzsch, F. v., Moroni, G. Fernandez, Iachellini, N. Ferreiro, Ferriol, S., Fichtinger, S., Figueroa-Feliciano, E., Filippini, J. -B., Filosofov, D., Formaggio, J. A., Friedl, M., Fuard, S., Fuchs, D., Fuss, A., Gaïor, R., Garai, A., Garrah, C., Gascon, J., Gerbier, G., Ghaith, M., Ghete, V. M., Gift, D., Giomataris, I., Giroux, G., Giuliani, A., Gorel, P., Gorla, P., Goupy, C., Goupy, J., Goy, C., Gros, M., Gros, P., Guardincerri, Y., Guerin, C., Guidi, V., Guillaudin, O., Gupta, S., Guy, E., Harrington, P., Hauff, D., Heine, S. T., Hertel, S. A., Holland, S. E., Hong, Z., Hoppe, E. W., Hossbach, T. W., Ianigro, J. -C., Iyer, V., Jastram, A., Ješkovský, M., Jin, Y., Jochum, J., Johnston, J. P., Juillard, A., Karaivanov, D., Kashyap, V., Katsioulas, I., Kazarcev, S., Kaznacheeva, M., Kelly, F., Kilminster, B., Kinast, A., Klinkenberg, L., Kluck, H., Knights, P., Korn, Y., Kraus, H., von Krosigk, B., Kubik, A., Kurinsky, N. A., Lamblin, J., Langenkämper, A., Langrock, S., Lasserre, T., Lattaud, H., Lautridou, P., Lawson, I., Lee, S. J., Lee, M., Letessier-Selvon, A., Lhuillier, D., Li, M., Lin, Y. -T., Lubashevskiy, A., Mahapatra, R., Maludze, S., Mancuso, M., Manthos, I., Marini, L., Marnieros, S., Martin, R. D., Matalon, A., Matthews, J., Mauri, B., Mayer, D. W., Mazzolari, A., Mazzucato, E., Theenhausen, H. Meyer zu, Michielin, E., Minet, J., Mirabolfathi, N., Mirbach, K. v., Misiak, D., Mitra, P., Mocellin, J-. L., Mohanty, B., Mokina, V., Mols, J. -P., Monfardini, A., Mounier, F., Munagavalasa, S., Muraz, J. -F., Navick, X. -F., Neep, T., Neog, H., Neyrial, H., Nikolopoulos, K., Nilima, A., Nones, C., Novati, V., O'Brien, P., Oberauer, L., Olivieri, E., Olmi, M., Onillon, A., Oriol, C., Orly, A., Orrell, J. L., Ortmann, T., Overman, C. T., Pagliarone, C., Palušová, V., Pari, P., Patel, P. K., Pattavina, L., Petricca, F., Piers, A., Pinckney, H. D., Piro, M. -C., Platt, M., Poda, D., Ponomarev, D., Potzel, W., Povinec, P., Pröbst, F., Privitera, P., Pucci, F., Ramanathan, K., Real, J. -S., Redon, T., Reindl, F., Ren, R., Robert, A., Da Rocha, J., Rodrigues, D., Rogly, R., Rothe, J., Rowe, N., Rozov, S., Rozova, I., Saab, T., Saffold, N., Salagnac, T., Sander, J., Sanglard, V., Santos, D., Sarkis, Y., Savu, V., Savvidis, G., Savvidis, I., Schönert, S., Schäffner, K., Schermer, N., Schieck, J., Schmidt, B., Schmiedmayer, D., Schwertner, C., Scola, L., Settimo, M., Shevchik, Ye., Sibille, V., Sidelnik, I., Singal, A., Smida, R., Haro, M. Sofo, Soldner, T., Stachurska, J., Stahlberg, M., Stefanazzi, L., Stodolsky, L., Strandhagen, C., Strauss, R., Stutz, A., Thomas, R., Thompson, A., Tiffenberg, J., Tomei, C., Traina, M., Uemura, S., Usherov, I., Vagneron, L., Van De Pontseele, W., Fernandez, F. A. Vazquez de Sola, Vidal, M., Vignati, M., Virto, A. L., Vivier, M., Volansky, T., Wagner, V., Wagner, F., Walker, J., Ward, R., Watkins, S. L., Wex, A., Willers, M., Wilson, M. J., Winslow, L., Yakushev, E., Yu, T. -T., Zampaolo, M., Zaytsev, A., Zema, V., Zinatulina, D., and Zolotarova, A.
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Astrophysics - Instrumentation and Methods for Astrophysics ,Physics - Instrumentation and Detectors - Abstract
Many low-threshold experiments observe sharply rising event rates of yet unknown origins below a few hundred eV, and larger than expected from known backgrounds. Due to the significant impact of this excess on the dark matter or neutrino sensitivity of these experiments, a collective effort has been started to share the knowledge about the individual observations. For this, the EXCESS Workshop was initiated. In its first iteration in June 2021, ten rare event search collaborations contributed to this initiative via talks and discussions. The contributing collaborations were CONNIE, CRESST, DAMIC, EDELWEISS, MINER, NEWS-G, NUCLEUS, RICOCHET, SENSEI and SuperCDMS. They presented data about their observed energy spectra and known backgrounds together with details about the respective measurements. In this paper, we summarize the presented information and give a comprehensive overview of the similarities and differences between the distinct measurements. The provided data is furthermore publicly available on the workshop's data repository together with a plotting tool for visualization., Comment: 44 pages, 20 figures; Editors: A. Fuss, M. Kaznacheeva, F. Reindl, F. Wagner; updated copyright statements and funding information
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- 2022
- Full Text
- View/download PDF
4. Measurements of the ionization efficiency of protons in methane
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Collaboration, NEWS-G, Balogh, L., Beaufort, C., Brossard, A., Caron, J. -F., Chapellier, M., Coquillat, J. -M., Corcoran, E. C., Crawford, S., Dastgheibi-Fard, A., Deng, Y., Dering, K., Durnford, D., Garrah, C., Gerbier, G., Giomataris, I., Giroux, G., Gorel, P., Gros, M., Gros, P., Guillaudin, O., Hoppe, E. W., Katsioulas, I., Kelly, F., Knights, P., Langrock, S., Lautridou, P., Manthos, I., Martin, R. D., Matthews, J., Mols, J. -P., Muraz, J. -F., Neep, T., Nikolopoulos, K., O'Brien, P., Piro, M. -C., Santos, D., Savvidis, G., Savvidis, I., Fernandez, F. Vazquez de Sola, Vidal, M., Ward, R., and Zampaolo, M.
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Physics - Instrumentation and Detectors ,High Energy Physics - Experiment - Abstract
The amount of energy released by a nuclear recoil ionizing the atoms of the active volume of detection appears "quenched" compared to an electron of the same kinetic energy. This different behavior in ionization between electrons and nuclei is described by the Ionization Quenching Factor (IQF) and it plays a crucial role in direct dark matter searches. For low kinetic energies (below $50~\mathrm{keV}$), IQF measurements deviate significantly from common models used for theoretical predictions and simulations. We report measurements of the IQF for proton, an appropriate target for searches of Dark Matter candidates with a mass of approximately 1 GeV, with kinetic energies in between $2~\mathrm{keV}$ and $13~\mathrm{keV}$ in $100~\mathrm{mbar}$ of methane. We used the Comimac facility in order to produce the motion of nuclei and electrons of controlled kinetic energy in the active volume, and a NEWS-G SPC to measure the deposited energy. The Comimac electrons are used as reference to calibrate the detector with 7 energy points. A detailed study of systematic effects led to the final results well fitted by $\mathrm{IQF}~(E_K)= E_K^\alpha~/~(\beta + E_K^\alpha)$ with $\alpha=0.70\pm0.08$ and $\beta = 1.32\pm0.17$. In agreement with some previous works in other gas mixtures, we measured less ionization energy than predicted from SRIM simulations, the difference reaching $33\%$ at $2~\mathrm{keV}$, Comment: 12 pages, 9 figures
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- 2022
5. Quenching factor measurements of neon nuclei in neon gas
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Balogh, L., Beaufort, C., Brossard, A., Caron, J. -F., Chapellier, M., Coquillat, J. -M., Corcoran, E. C., Crawford, S., Fard, A. Dastgheibi, Deng, Y., Dering, K., Durnford, D., Garrah, C., Gerbier, G., Giomataris, I., Giroux, G., Gorel, P., Gros, M., Gros, P., Guillaudin, O., Hoppe, E. W., Katsioulas, I., Kelly, F., Knights, P., Kwon, L., Langrock, S., Lautridou, P., Martin, R. D., Manthos, I., Matthews, J., Mols, J. -P., Muraz, J. -F., Neep, T., Nikolopoulos, K., O'Brien, P., Piro, M. -C., Samuleev, P., Santos, D., Savvidis, G., Savvidis, I., Fernandez, F. Vazquez de Sola, Vidal, M., Ward, R., Zampaolo, M., An, P., Awe, C., Barbeau, P., Hedges, S., Li, L., and Runge, J.
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Physics - Instrumentation and Detectors ,High Energy Physics - Experiment - Abstract
The NEWS-G collaboration uses Spherical Proportional Counters (SPCs) to search for weakly interacting massive particles (WIMPs). In this paper, we report the first measurements of the nuclear quenching factor in neon gas at \SI{2}{bar} using an SPC deployed in a neutron beam at the TUNL facility. The energy-dependence of the nuclear quenching factor is modelled using a simple power law: $\alpha$E$_{nr}^{\beta}$; we determine its parameters by simultaneously fitting the data collected with the detector over a range of energies. We measured the following parameters in Ne:CH$_{4}$ at \SI{2}{bar}: $\alpha$ = 0.2801 $\pm$ 0.0050 (fit) $\pm$ 0.0045 (sys) and $\beta$ = 0.0867 $\pm$ 0.020 (fit) $\pm$ 0.006(sys). Our measurements do not agree with expected values from SRIM or Lindhard theory. We demonstrated the feasibility of performing quenching factor measurements at sub-keV energies in gases using SPCs and a neutron beam.
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- 2021
- Full Text
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6. Copper electroplating for background suppression in the NEWS-G experiment
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Collaboration, NEWS-G, Balogh, L., Beaufort, C., Brossard, A., Bunker, R., Caron, J. -F., Chapellier, M., Coquillat, J. -M., Corcoran, E. C., Crawford, S., Fard, A. Dastgheibi, Deng, Y., Dering, K., Durnford, D., Gerbier, G., Giomataris, I., Giroux, G., Gorel, P., Gros, M., Gros, P., Guillaudin, O., Hoppe, E. W., Katsioulas, I., Kelly, F., Knights, P., Kwon, L., Langrock, S., Lautridou, P., Martin, R. D., Mols, J. -P., Muraz, J. -F., Navick, X. -F., Neep, T., Nikolopoulos, K., O'Brien, P., Owen, R., Piro, M. -C., Santos, D., Savvidis, G., Savvidis, I., Fernandez, F. Vazquez de Sola, Vidal, M., Ward, R., Zampaolo, M., Anguiano, S. Alcantar, Arnquist, I. J., di Vacri, M. L., Harouaka, K., Kobayashi, K., and Thommasson, K. S.
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Physics - Instrumentation and Detectors ,Astrophysics - Instrumentation and Methods for Astrophysics ,High Energy Physics - Experiment - Abstract
New Experiments with Spheres-Gas (NEWS-G) is a dark matter direct detection experiment that will operate at SNOLAB (Canada). Similar to other rare-event searches, the materials used in the detector construction are subject to stringent radiopurity requirements. The detector features a 140-cm diameter proportional counter comprising two hemispheres made from commercially sourced 99.99% pure copper. Such copper is widely used in rare-event searches because it is readily available, there are no long-lived Cu radioisotopes, and levels of non-Cu radiocontaminants are generally low. However, measurements performed with a dedicated 210Po alpha counting method using an XIA detector confirmed a problematic concentration of 210Pb in bulk of the copper. To shield the proportional counter's active volume, a low-background electroforming method was adapted to the hemispherical shape to grow a 500-$\mu$m thick layer of ultra-radiopure copper to the detector's inner surface. In this paper the process is described, which was prototyped at Pacific Northwest National Laboratory (PNNL), USA, and then conducted at full scale in the Laboratoire Souterrain de Modane in France. The radiopurity of the electroplated copper was assessed through Inductively Coupled Plasma Mass Spectrometry (ICP-MS). Measurements of samples from the first (second) hemisphere give 68% confidence upper limits of <0.58 $\mu$Bq/kg (<0.24 $\mu$Bq/kg) and <0.26 $\mu$Bq/kg (<0.11 $\mu$Bq/kg) on the 232Th and 238U contamination levels, respectively. These results are comparable to previously reported measurements of electroformed copper produced for other rare-event searches, which were also found to have low concentration of 210Pb consistent with the background goals of the NEWS-G experiment., Comment: 11 pages, 11 figures, 3 tables
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- 2020
7. Expression of Interest for Evolution of the Mu2e Experiment
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Abusalma, F., Ambrose, D., Artikov, A., Bernstein, R., Blazey, G. C., Bloise, C., Boi, S., Bolton, T., Bono, J., Bonventre, R., Bowring, D., Brown, D., Byrum, K., Campbell, M., Caron, J. -F., Cervelli, F., Chokheli, D., Ciampa, K., Ciolini, R., Coleman, R., Cronin-Hennessy, D., Culbertson, R., Cummings, M. A., Daniel, A., Davydov, Y., Demers, S., Denisov, D., Denisov, S., Di Falco, S., Diociaiuti, E., Djilkibaev, R., Donati, S., Donghia, R., Drake, G., Dukes, E. C., Echenard, B., Edmonds, A., Ehrlich, R., Evdokimov, V., Fabbricatore, P., Ferrari, A., Frank, M., Gaponenko, A., Gatto, C., Giorgio, Z., Giovannella, S., Giusti, V., Glass, H., Glenzinski, D., Goodenough, L., Group, C., Happacher, F., Harkness-Brennan, L., Hedin, D., Heller, K., Hitlin, D., Hocker, A., Hooper, R., Horton-Smith, G., Hu, C., Hung, P. Q., Hungerford, E., Jenkins, M., Jones, M., Kargiantoulakis, M., Khaw, K. S., Kiburg, B., Kolomensky, Y., Kozminski, J., Kutschke, R., Lancaster, M., Lin, D., Logashenko, I., Lombardo, V., Luca, A., Lukicov, G., Lynch, K., Martini, M., Mazzacane, A., Miller, J., Miscetti, S., Morescalchi, L., Mott, J., Mueller, S. E., Murat, P., Nagaslaev, V., Neuffer, D., Oksuzian, Y., Pasciuto, D., Pedreschi, E., Pezzullo, G., Pla-Dalmau, A., Pollack, B., Popov, A., Popp, J., Porter, F., Prebys, E., Pronskikh, V., Pushka, D., Quirk, J., Rakness, G., Ray, R., Ricci, M., Röhrken, M., Rusu, V., Saputi, A., Sarra, I., Schmitt, M., Spinella, F., Stratakis, D., Strauss, T., Talaga, R., Tereshchenko, V., Tran, N., Tschirhart, R., Usubov, Z., Velasco, M., Wagner, R., Wang, Y., Werkema, S., Whitmore, J., Winter, P., Xia, L., Zhang, L., Zhu, R. -Y., Zutshi, V., and Zwaska, R.
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Physics - Instrumentation and Detectors ,High Energy Physics - Experiment - Abstract
We propose an evolution of the Mu2e experiment, called Mu2e-II, that would leverage advances in detector technology and utilize the increased proton intensity provided by the Fermilab PIP-II upgrade to improve the sensitivity for neutrinoless muon-to-electron conversion by one order of magnitude beyond the Mu2e experiment, providing the deepest probe of charged lepton flavor violation in the foreseeable future. Mu2e-II will use as much of the Mu2e infrastructure as possible, providing, where required, improvements to the Mu2e apparatus to accommodate the increased beam intensity and cope with the accompanying increase in backgrounds., Comment: 17 pages, 4 figures, 1 table; Submitted to the Fermilab Physics Advisory Committee
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- 2018
8. SuperB Technical Design Report
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SuperB Collaboration, Baszczyk, M., Dorosz, P., Kolodziej, J., Kucewicz, W., Sapor, M., Jeremie, A., Pous, E. Grauges, Bruno, G. E., De Robertis, G., Diacono, D., Donvito, G., Fusco, P., Gargano, F., Giordano, F., Loddo, F., Loparco, F., Maggi, G. P., Manzari, V., Mazziotta, M. N., Nappi, E., Palano, A., Santeramo, B., Sgura, I., Silvestris, L., Spinoso, V., Eigen, G., Zalieckas, J., Zhuo, Z., Jenkovszky, L., Balbi, G., Boldini, M., Bonacorsi, D., Cafaro, V., D'Antone, I., Dallavalle, G. M., Di Sipio, R., Fabbri, F., Fabbri, L., Gabrielli, A., Galli, D., Giacomelli, P., Giordano, V., Giorgi, F. M., Grandi, C., Lax, I., Meo, S. Lo, Marconi, U., Montanari, A., Pellegrini, G., Piccinini, M., Rovelli, T., Cesari, N. Semprini, Torromeo, G., Tosi, N., Travaglini, R., Vagnoni, V. M., Valentinetti, S., Villa, M., Zoccoli, A., Caron, J. -F., Hearty, C., Lu, P. F. -T., Mattison, T. S., McKenna, J. A., So, R. Y. -C., Barnyakov, M. Yu., Blinov, V. E., Botov, A. A., Druzhinin, V. P., Golubev, V. B., Kononov, S. A., Kravchenko, E. A., Levichev, E. B., Onuchin, A. P., Serednyakov, S. I., Shtol, D. A., Skovpen, Y. I., Solodov, E. P., Cardini, A., Carpinelli, M., Chao, D. S. -T., Cheng, C. H., Doll, D. A., Echenard, B., Flood, K., Hanson, J., Hitlin, D. G., Ongmongkolkul, P., Porter, F. C., Zhu, R. Y., Randazzo, N., Burelo, E. De La Cruz, Zheng, Y., Campos, P., De Silva, M., Kathirgamaraju, A., Meadows, B., Pushpawela, B., Shi, Y., Sokoloff, M., Castro, G. Lopez, Ciaschini, V., Franchini, P., Giacomini, F., Paolini, A., Polania, G. A. Calderon, Laczek, S., Romanowicz, P., Szybinski, B., Czuchry, M., Flis, L., Harezlak, D., Kocot, J., Radecki, M., Sterzel, M., Szepieniec, T., Szymocha, T., Wójcik, P., Andreotti, M., Baldini, W., Calabrese, R., Carassiti, V., Cibinetto, G., Ramusino, A. Cotta, Evangelisti, F., Gianoli, A., Luppi, E., Malaguti, R., Manzali, M., Melchiorri, M., Munerato, M., Padoan, C., Santoro, V., Tomassetti, L., Beretta, M. M., Biagini, M., Boscolo, M., Capitolo, E., de Sangro, R., Esposito, M., Felici, G., Finocchiaro, G., Gatta, M., Gatti, C., Guiducci, S., Lauciani, S., Patteri, P., Peruzzi, I., Piccolo, M., Raimondi, P., Rama, M., Sanelli, C., Tomassini, S., Fabbricatore, P., Delepine, D., Santos, M. A. Reyes, Chrzaszcz, M., Grzymkowski, R., Knap, P., Kotula, J., Lesiak, T., Ludwin, J., Michalowski, J., Pawlik, B., Rachwal, B., Stodulski, M., Wiechczynski, J., Witek, M., Zawiejski, L., Zdybal, M., Aushev, V. Y., Ustynov, A., Arnaud, N., Bambade, P., Beigbeder, C., Bogard, F., Borsato, M., Breton, D., Brossard, J., Burmistrov, L., Charlet, D., Chaumat, V., Dadoun, O., Berni, M. El, Maalmi, J., Puill, V., Rimbault, C., Stocchi, A., Tocut, V., Variola, A., Wallon, S., Wormser, G., Grancagnolo, F., Ben-Haim, E., Sitt, S., Baylac, M., Bourrion, O., Deconto, J. -M., Martinez, Y. Gomez, Monseu, N., Muraz, J. -F., Real, J. -S., Vescovi, C., Cenci, R., Jawahery, A., Roberts, D., Twedt, E. W., Cheaib, R., Lindemann, D., Nderitu, S., Patel, P., Robertson, S. H., Swersky, D., Warburton, A., Flores, E. Cuautle, Sanchez, G. Toledo, Biassoni, P., Bombelli, L., Citterio, M., Coelli, S., Fiorini, C., Liberali, V., Monti, M., Nasri, B., Neri, N., Palombo, F., Sabatini, F., Stabile, A., Berra, A., Giachero, A., Gotti, C., Lietti, D., Maino, M., Pessina, G., Prest, M., Martin, J. -P., Simard, M., Starinski, N., Taras, P., Drutskoy, A., Makarychev, S., Nefediev, A. V., Aloisio, A., Cavaliere, S., De Nardo, G., Della Pietra, M., Doria, A., Giordano, R., Ordine, A., Pardi, S., Russo, G., Sciacca, C., Bigi, I. I., Jessop, C. P., Wang, W., Bellato, M., Benettoni, M., Corvo, M., Crescente, A., Corso, F. Dal, Dosselli, U., Fanin, C., Gianelle, A., Longo, S., Michelotto, M., Montecassiano, F., Morandin, M., Pengo, R., Posocco, M., Rotondo, M., Simi, G., Stroili, R., Gaioni, L., Manazza, A., Manghisoni, M., Ratti, L., Re, V., Traversi, G., Zucca, S., Bizzaglia, S., Bizzarri, M., Cecchi, C., Germani, S., Lebeau, M., Lubrano, P., Manoni, E., Papi, A., Rossi, A., Scolieri, G., Batignani, G., Bettarini, S., Casarosa, G., Cervelli, A., Fella, A., Forti, F., Giorgi, M., Lilli, L., Lusiani, A., Oberhof, B., Paladino, A., Pantaleo, F., Paoloni, E., Perez, A. L. Perez, Rizzo, G., Walsh, J., Téllez, A. Fernández, Beck, G., Berman, M., Bevan, A., Gannaway, F., Inguglia, G., Martin, A. J., Morris, J., Bocci, V., Capodiferro, M., Chiodi, G., Dafinei, I., Drenska, N. V., Faccini, R., Ferroni, F., Gargiulo, C., Gauzzi, P., Luci, C., Lunadei, R., Martellotti, G., Pellegrino, F., Pettinacci, V., Pinci, D., Recchia, L., Ruggeri, D., Zullo, A., Camarri, P., Cardarelli, R., De Santis, C., Di Ciaccio, A., Di Felice, V., Di Palma, F., Di Simone, A., Marcelli, L., Messi, R., Moricciani, D., Sparvoli, R., Tammaro, S., Branchini, P., Budano, A., Bussino, S., Ciuchini, M., Nguyen, F., Passeri, A., Ruggieri, F., Spiriti, E., Wilson, F., Monzon, I. Leon, Millan-Almaraz, J. R., Podesta-Lerma, P. L. M., Aston, D., Dey, B., Fisher, A., Jackson, P. D., Leith, D. W. G. S., Luitz, S., MacFarlane, D., McCulloch, M., Metcalfe, S., Novokhatski, A., Osier, S., Prepost, R., Ratcliff, B., Seeman, J., Sullivan, M., Va'vra, J., Wienands, U., Wisniewski, W., Altschul, B. D., Purohit, M. V., Baudot, J., Ripp-Baudot, I., Cirrone, G. A. P., Cuttone, G., Bezshyyko, O., Dolinska, G., Soffer, A., Bianchi, F., De Mori, F., Filippi, A., Gamba, D., Marcello, S., Bomben, M., Bosisio, L., Cristaudo, P., Lanceri, L., Liberti, B., Rashevskaya, I., Stella, C., Vallazza, E. S., Vitale, L., Auriemma, G., Satriano, C., Vidal, F. Martinez, de Cos, J. Mazorra, Oyanguren, A., Valls, P. Ruiz, Beaulieu, A., Dejong, S., Franta, J., Lewczuk, M. J., Roney, M., and Sobie, R.
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Physics - Instrumentation and Detectors ,High Energy Physics - Experiment - Abstract
In this Technical Design Report (TDR) we describe the SuperB detector that was to be installed on the SuperB e+e- high luminosity collider. The SuperB asymmetric collider, which was to be constructed on the Tor Vergata campus near the INFN Frascati National Laboratory, was designed to operate both at the Upsilon(4S) center-of-mass energy with a luminosity of 10^{36} cm^{-2}s^{-1} and at the tau/charm production threshold with a luminosity of 10^{35} cm^{-2}s^{-1}. This high luminosity, producing a data sample about a factor 100 larger than present B Factories, would allow investigation of new physics effects in rare decays, CP Violation and Lepton Flavour Violation. This document details the detector design presented in the Conceptual Design Report (CDR) in 2007. The R&D and engineering studies performed to arrive at the full detector design are described, and an updated cost estimate is presented. A combination of a more realistic cost estimates and the unavailability of funds due of the global economic climate led to a formal cancelation of the project on Nov 27, 2012., Comment: 495 pages
- Published
- 2013
9. Measurements of the ionization efficiency of protons in methane
- Author
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G Collaboration, Balogh, L., Beaufort, C., Brossard, A., Caron, J. -F., Chapellier, M., Coquillat, J. -M., Corcoran, E. C., Crawford, S., Dastgheibi-Fard, A., Deng, Y., Dering, K., Durnford, D., Garrah, C., Gerbier, G., Giomataris, I., Giroux, G., Gorel, P., Gros, M., Gros, P., Guillaudin, O., Hoppe, E. W., Katsioulas, I., Kelly, F., Knights, P., Langrock, S., Lautridou, P., Manthos, I., Martin, R. D., Matthews, J., Mols, J. -P., Muraz, J. -F., Neep, T., Nikolopoulos, K., O'Brien, P., Piro, M. -C., Santos, D., Savvidis, G., Savvidis, I., Fernandez, F. Vazquez de Sola, Vidal, M., Ward, R., Zampaolo, M., 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 de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Laboratoire de physique subatomique et des technologies associées (SUBATECH), Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)-IMT Atlantique (IMT Atlantique), Institut Mines-Télécom [Paris] (IMT)-Institut Mines-Télécom [Paris] (IMT)-Nantes université - UFR des Sciences et des Techniques (Nantes univ - UFR ST), Nantes Université - pôle Sciences et technologie, Nantes Université (Nantes Univ)-Nantes Université (Nantes Univ)-Nantes Université - pôle Sciences et technologie, Nantes Université (Nantes Univ)-Nantes Université (Nantes Univ), and NEWS-G
- Subjects
High Energy Physics - Experiment (hep-ex) ,Physics - Instrumentation and Detectors ,Physics and Astronomy (miscellaneous) ,Astrophysics::High Energy Astrophysical Phenomena ,FOS: Physical sciences ,Instrumentation and Detectors (physics.ins-det) ,[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det] ,Engineering (miscellaneous) ,High Energy Physics - Experiment - Abstract
The amount of energy released by a nuclear recoil ionizing the atoms of the active volume of detection appears "quenched" compared to an electron of the same kinetic energy. This different behavior in ionization between electrons and nuclei is described by the Ionization Quenching Factor (IQF) and it plays a crucial role in direct dark matter searches. For low kinetic energies (below $50~\mathrm{keV}$), IQF measurements deviate significantly from common models used for theoretical predictions and simulations. We report measurements of the IQF for proton, an appropriate target for searches of Dark Matter candidates with a mass of approximately 1 GeV, with kinetic energies in between $2~\mathrm{keV}$ and $13~\mathrm{keV}$ in $100~\mathrm{mbar}$ of methane. We used the Comimac facility in order to produce the motion of nuclei and electrons of controlled kinetic energy in the active volume, and a NEWS-G SPC to measure the deposited energy. The Comimac electrons are used as reference to calibrate the detector with 7 energy points. A detailed study of systematic effects led to the final results well fitted by $\mathrm{IQF}~(E_K)= E_K^\alpha~/~(\beta + E_K^\alpha)$ with $\alpha=0.70\pm0.08$ and $\beta = 1.32\pm0.17$. In agreement with some previous works in other gas mixtures, we measured less ionization energy than predicted from SRIM simulations, the difference reaching $33\%$ at $2~\mathrm{keV}$, Comment: 12 pages, 9 figures
- Published
- 2022
- Full Text
- View/download PDF
10. SuperB Technical Design Report
- Author
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Superb, Collaboration, Baszczyk, M., Dorosz, P., Kolodziej, J., Kucewicz, W., Sapor, M., Jeremie, A., Grauges Pous, E., Bruno, G. E., De Robertis, G., Diacono, D., Donvito, G., Fusco, P., Gargano, F., Giordano, F., Loddo, F., Loparco, F., Maggi, G. P., Manzari, V., Mazziotta, M. N., Nappi, E., Palano, A., Santeramo, B., Sgura, I., Silvestris, L., Spinoso, V., Eigen, G., Zalieckas, J., Zhuo, Z., Jenkovszky, L., Balbi, G., Boldini, M., Bonacorsi, D., Cafaro, V., D'Antone, I., Dallavalle, G. M., Di Sipio, R., Fabbri, F., Fabbri, L., Gabrielli, A., Galli, D., Giacomelli, P., Giordano, V., Giorgi, F. M., Grandi, C., Lax, I., Lo Meo, S., Marconi, U., Montanari, A., Pellegrini, G., Piccinini, M., Rovelli, T., Semprini Cesari, N., Torromeo, G., Tosi, N., Travaglini, R., Vagnoni, V. M., Valentinetti, S., Villa, M., Zoccoli, A., Caron, J. F., Hearty, C., P. F. T., Lu, Mattison, T. S., Mckenna, J. A., R. Y. C., So, Yu Barnyakov, M. Y. u. Barnyakov, Blinov, V. E., Botov, A. A., Druzhinin, V. P., Golubev, V. B., Kononov, S. A., Kravchenko, E. A., Levichev, E. B., Onuchin, A. P., Serednyakov, S. I., Shtol, D. A., Skovpen, Y. I., Solodov, E. P., Cardini, A., Carpinelli, M., Chao, D. S. T., Cheng, C. H., Doll, D. A., Echenard, B., Flood, K., Hanson, J., Hitlin, D. G., Ongmongkolkul, P., Porter, F. C., Zhu, R. Y., Randazzo, N., De La Cruz Burelo, E., Zheng, Y., Campos, P., De Silva, M., Kathirgamaraju, A., Meadows, B., Pushpawela, B., Shi, Y., Sokoloff, M., Lopez Castro, G., Ciaschini, V., Franchini, P., Giacomini, F., Paolini, A., Calderon Polania, G. A., Laczek, S., Romanowicz, P., Szybinski, B., Czuchry, M., Flis, L., Harezlak, D., Kocot, J., Radecki, M., Sterzel, M., Szepieniec, T., Szymocha, T., Wójcik, P., Andreotti, M., Baldini, W., Calabrese, R., Carassiti, V., Cibinetto, G., Cotta Ramusino, A., Evangelisti, F., Gianoli, A., Luppi, E., Malaguti, R., Manzali, M., Melchiorri, M., Munerato, M., Padoan, C., Santoro, V., Tomassetti, L., Beretta, M. M., Biagini, M., Boscolo, M., Capitolo, E., de Sangro, R., Esposito, M., Felici, G., Finocchiaro, G., Gatta, M., Gatti, C., Guiducci, S., Lauciani, S., Patteri, P., Peruzzi, I., Piccolo, M., Raimondi, P., Rama, Matteo, Sanelli, C., Tomassini, S., Fabbricatore, P., Delepine, D., Reyes Santos, M. A., Chrzaszcz, M., Grzymkowski, R., Knap, P., Kotula, J., Lesiak, T., Ludwin, J., Michalowski, J., Pawlik, B., Rachwal, B., Stodulski, M., Wiechczynski, J., Witek, M., Zawiejski, L., Zdybal, M., Aushev, V. Y., Ustynov, A., Arnaud, N., Bambade, P., Beigbeder, C., Bogard, F., Borsato, M., Breton, D., Brossard, J., Burmistrov, L., Charlet, D., Chaumat, V., Dadoun, O., El Berni, M., Maalmi, J., Puill, V., Rimbault, C., Stocchi, A., Tocut, V., Variola, A., Wallon, S., Wormser, G., Grancagnolo, F., Ben Haim, E., Sitt, S., Baylac, M., Bourrion, O., Deconto, J. M., Gomez Martinez, Y., Monseu, N., Muraz, J. F., Real, J. S., Vescovi, C., Cenci, R., Jawahery, A., Roberts, D., Twedt, E. W., Cheaib, R., Lindemann, D., Nderitu, S., Patel, P., Robertson, S. H., Swersky, D., Warburton, A., Cuautle Flores, E., Toledo Sanchez, G., Biassoni, P., Bombelli, L., Citterio, M., Coelli, S., Fiorini, C., Liberali, V., Monti, M., Nasri, B., Neri, N., Palombo, F., Sabatini, F., Stabile, A., Berra, A., Giachero, A., Gotti, C., Lietti, D., Maino, M., Pessina, G., Prest, M., Martin, J. P., Simard, M., Starinski, N., Taras, P., Drutskoy, A., Makarychev, S., Nefediev, A. V., Aloisio, A., Cavaliere, S., De Nardo, G., Della Pietra, M., Doria, A., Giordano, R., Ordine, A., Pardi, S., Russo, G., Sciacca, C., Bigi, I. I., Jessop, C. P., Wang, W., Bellato, M., Benettoni, M., Corvo, M., Crescente, A., Dal Corso, F., Dosselli, U., Fanin, C., Gianelle, A., Longo, S., Michelotto, M., Montecassiano, F., Morandin, M., Pengo, R., Posocco, M., Rotondo, M., Simi, G., Stroili, R., Gaioni, L., Manazza, A., Manghisoni, M., Ratti, L., Re, V., Traversi, G., Zucca, S., Bizzaglia, S., Bizzarri, M., Cecchi, C., Germani, S., Lebeau, M., Lubrano, P., Manoni, E., Papi, A., Rossi, A., Scolieri, G., Batignani, Giovanni, Bettarini, Stefano, Casarosa, Giulia, Cervelli, A., Fella, A., Forti, Francesco, Giorgi, Marcello, Lilli, L., Lusiani, A., Oberhof, BENJAMIN JEROME ANDREAS, Paladino, Antonio, Pantaleo, F., Paoloni, Eugenio, Perez Perez, A. L., Rizzo, Giuliana, Walsh, J., Fernández Téllez, A., Beck, G., Berman, M., Bevan, A., Gannaway, F., Inguglia, G., Martin, A. J., Morris, J., Bocci, V., Capodiferro, M., Chiodi, G., Dafinei, I., Drenska, N. V., Faccini, R., Ferroni, F., Gargiulo, C., Gauzzi, P., Luci, C., Lunadei, R., Martellotti, G., Pellegrino, F., Pettinacci, V., Pinci, D., Recchia, L., Ruggeri, D., Zullo, A., Camarri, P., Cardarelli, R., De Santis, C., Di Ciaccio, A., Di Felice, V., Di Palma, F., Di Simone, A., Marcelli, L., Messi, R., Moricciani, D., Sparvoli, R., Tammaro, S., Branchini, P., Budano, A., Bussino, S., Ciuchini, M., Nguyen, F., Passeri, A., Ruggieri, F., Spiriti, E., Wilson, F., Leon Monzon, I., Millan Almaraz, J. R., Podesta Lerma, P. L. M., Aston, D., Dey, B., Fisher, A., Jackson, P. D., Leith, D. W. G. S., Luitz, S., Macfarlane, D., Mcculloch, M., Metcalfe, S., Novokhatski, A., Osier, S., Prepost, R., Ratcliff, B., Seeman, J., Sullivan, M., Va'Vra, J., Wienands, U., Wisniewski, W., Altschul, B. D., Purohit, M. V., Baudot, J., Ripp Baudot, I., Cirrone, G. A. P., Cuttone, G., Bezshyyko, O., Dolinska, G., Soffer, A., Bianchi, F., De Mori, F., Filippi, A., Gamba, D., Marcello, S., Bomben, M., Bosisio, L., Cristaudo, P., Lanceri, L., Liberti, B., Rashevskaya, I., Stella, C., Vallazza, E. S., Vitale, L., Auriemma, G., Satriano, C., Martinez Vidal, F., Mazorra de Cos, J., Oyanguren, A., Ruiz Valls, P., Beaulieu, A., Dejong, S., Franta, J., Lewczuk, M. J., Roney, M., Sobie, R., M., Baszczyk, P., Dorosz, J., Kolodziej, W., Kucewicz, M., Sapor, A., Jeremie, E., Grauges Pou, G. E., Bruno, G., De Roberti, D., Diacono, G., Donvito, P., Fusco, F., Gargano, F., Giordano, F., Loddo, F., Loparco, G. P., Maggi, V., Manzari, M. N., Mazziotta, E., Nappi, A., Palano, B., Santeramo, I., Sgura, L., Silvestri, V., Spinoso, G., Eigen, J., Zaliecka, Z., Zhu, L., Jenkovszky, G., Balbi, M., Boldini, D., Bonacorsi, V., Cafaro, I., D'Antone, G. M., Dallavalle, R., Di Sipio, F., Fabbri, L., Fabbri, A., Gabrielli, D., Galli, P., Giacomelli, V., Giordano, F. M., Giorgi, C., Grandi, I., Lax, S., Lo Meo, U., Marconi, A., Montanari, G., Pellegrini, M., Piccinini, T., Rovelli, N., Semprini Cesari, G., Torromeo, N., Tosi, R., Travaglini, V. M., Vagnoni, S., Valentinetti, M., Villa, A., Zoccoli, J. F., Caron, C., Hearty, P. F. T., Lu, T. S., Mattison, J. A., Mckenna, R. Y. C., So, Barnyakov, M. Y. u., V. E., Blinov, A. A., Botov, V. P., Druzhinin, V. B., Golubev, S. A., Kononov, E. A., Kravchenko, E. B., Levichev, A. P., Onuchin, S. I., Serednyakov, D. A., Shtol, Y. I., Skovpen, E. P., Solodov, A., Cardini, M., Carpinelli, D. S. T., Chao, C. H., Cheng, D. A., Doll, B., Echenard, K., Flood, J., Hanson, D. G., Hitlin, P., Ongmongkolkul, F. C., Porter, R. Y., Zhu, N., Randazzo, E., De La Cruz Burelo, Y., Zheng, P., Campo, M., De Silva, A., Kathirgamaraju, B., Meadow, B., Pushpawela, Y., Shi, M., Sokoloff, G., Lopez Castro, V., Ciaschini, P., Franchini, F., Giacomini, A., Paolini, G. A., Calderon Polania, S., Laczek, P., Romanowicz, B., Szybinski, M., Czuchry, L., Fli, D., Harezlak, J., Kocot, M., Radecki, M., Sterzel, T., Szepieniec, T., Szymocha, P., Wójcik, M., Andreotti, W., Baldini, R., Calabrese, V., Carassiti, G., Cibinetto, A., Cotta Ramusino, F., Evangelisti, A., Gianoli, E., Luppi, R., Malaguti, M., Manzali, M., Melchiorri, M., Munerato, C., Padoan, V., Santoro, L., Tomassetti, M. M., Beretta, M., Biagini, M., Boscolo, E., Capitolo, R., de Sangro, M., Esposito, G., Felici, G., Finocchiaro, M., Gatta, C., Gatti, S., Guiducci, S., Lauciani, P., Patteri, I., Peruzzi, M., Piccolo, P., Raimondi, M., Rama, C., Sanelli, S., Tomassini, P., Fabbricatore, D., Delepine, M. A., Reyes Santo, M., Chrzaszcz, R., Grzymkowski, P., Knap, J., Kotula, T., Lesiak, J., Ludwin, J., Michalowski, B., Pawlik, B., Rachwal, M., Stodulski, J., Wiechczynski, M., Witek, L., Zawiejski, M., Zdybal, V. Y., Aushev, A., Ustynov, N., Arnaud, P., Bambade, C., Beigbeder, F., Bogard, M., Borsato, D., Breton, J., Brossard, L., Burmistrov, D., Charlet, V., Chaumat, O., Dadoun, M., El Berni, J., Maalmi, V., Puill, C., Rimbault, A., Stocchi, V., Tocut, A., Variola, S., Wallon, G., Wormser, F., Grancagnolo, E., Ben Haim, S., Sitt, M., Baylac, O., Bourrion, J. M., Deconto, Y., Gomez Martinez, N., Monseu, J. F., Muraz, J. S., Real, C., Vescovi, R., Cenci, A., Jawahery, D., Robert, E. W., Twedt, R., Cheaib, D., Lindemann, S., Nderitu, P., Patel, S. H., Robertson, D., Swersky, A., Warburton, E., Cuautle Flore, G., Toledo Sanchez, P., Biassoni, L., Bombelli, M., Citterio, S., Coelli, C., Fiorini, V., Liberali, M., Monti, B., Nasri, N., Neri, F., Palombo, F., Sabatini, A., Stabile, A., Berra, A., Giachero, C., Gotti, D., Lietti, M., Maino, G., Pessina, M., Prest, J. P., Martin, M., Simard, N., Starinski, P., Tara, A., Drutskoy, S., Makarychev, A. V., Nefediev, A., Aloisio, Cavaliere, Sergio, G., De Nard, DELLA PIETRA, Massimo, A., Doria, Giordano, Raffaele, A., Ordine, S., Pardi, Russo, Guido, C., Sciacca, I. I., Bigi, C. P., Jessop, W., Wang, M., Bellato, M., Benettoni, M., Corvo, A., Crescente, F., Dal Corso, U., Dosselli, C., Fanin, A., Gianelle, S., Longo, M., Michelotto, F., Montecassiano, M., Morandin, R., Pengo, M., Posocco, M., Rotondo, G., Simi, R., Stroili, L., Gaioni, A., Manazza, M., Manghisoni, L., Ratti, V., Re, G., Traversi, S., Zucca, S., Bizzaglia, M., Bizzarri, C., Cecchi, S., Germani, M., Lebeau, P., Lubrano, E., Manoni, A., Papi, A., Rossi, G., Scolieri, G., Batignani, S., Bettarini, G., Casarosa, A., Cervelli, A., Fella, F., Forti, M., Giorgi, L., Lilli, A., Lusiani, B., Oberhof, A., Paladino, F., Pantaleo, E., Paoloni, A. L., Perez Perez, G., Rizzo, J., Walsh, A., Fernández Téllez, G., Beck, M., Berman, A., Bevan, F., Gannaway, G., Inguglia, A. J., Martin, J., Morri, V., Bocci, M., Capodiferro, G., Chiodi, I., Dafinei, N. V., Drenska, R., Faccini, F., Ferroni, C., Gargiulo, P., Gauzzi, C., Luci, R., Lunadei, G., Martellotti, F., Pellegrino, V., Pettinacci, D., Pinci, L., Recchia, D., Ruggeri, A., Zullo, P., Camarri, R., Cardarelli, C., De Santi, A., Di Ciaccio, V., Di Felice, F., Di Palma, A., Di Simone, L., Marcelli, R., Messi, D., Moricciani, R., Sparvoli, S., Tammaro, P., Branchini, A., Budano, S., Bussino, M., Ciuchini, F., Nguyen, A., Passeri, F., Ruggieri, E., Spiriti, F., Wilson, I., Leon Monzon, J. R., Millan Almaraz, P. L. M., Podesta Lerma, D., Aston, B., Dey, A., Fisher, P. D., Jackson, D. W. G. S., Leith, S., Luitz, D., Macfarlane, M., Mcculloch, S., Metcalfe, A., Novokhatski, S., Osier, R., Prepost, B., Ratcliff, J., Seeman, M., Sullivan, J., Va'Vra, U., Wienand, W., Wisniewski, B. D., Altschul, M. V., Purohit, J., Baudot, I., Ripp Baudot, G. A. P., Cirrone, G., Cuttone, O., Bezshyyko, G., Dolinska, A., Soffer, F., Bianchi, F., De Mori, A., Filippi, D., Gamba, S., Marcello, M., Bomben, L., Bosisio, P., Cristaudo, L., Lanceri, B., Liberti, I., Rashevskaya, C., Stella, E. S., Vallazza, L., Vitale, G., Auriemma, C., Satriano, F., Martinez Vidal, J., Mazorra de Co, A., Oyanguren, P., Ruiz Vall, A., Beaulieu, S., Dejong, J., Franta, M. J., Lewczuk, M., Roney, and R., Sobie
- Subjects
Physics - Instrumentation and Detectors ,High Energy Physics - Experiment - Abstract
In this Technical Design Report (TDR) we describe the SuperB detector that was to be installed on the SuperB e+e- high luminosity collider. The SuperB asymmetric collider, which was to be constructed on the Tor Vergata campus near the INFN Frascati National Laboratory, was designed to operate both at the Upsilon(4S) center-of-mass energy with a luminosity of 10^{36} cm^{-2}s^{-1} and at the tau/charm production threshold with a luminosity of 10^{35} cm^{-2}s^{-1}. This high luminosity, producing a data sample about a factor 100 larger than present B Factories, would allow investigation of new physics effects in rare decays, CP Violation and Lepton Flavour Violation. This document details the detector design presented in the Conceptual Design Report (CDR) in 2007. The R&D and engineering studies performed to arrive at the full detector design are described, and an updated cost estimate is presented. A combination of a more realistic cost estimates and the unavailability of funds due of the global economic climate led to a formal cancelation of the project on Nov 27, 2012.
- Published
- 2013
11. SuperB Detector technical design Report
- Author
-
Superb, Collaboration, Baszczyk, M., Dorosz, P., Kolodziej, J., Kucewicz, W., Sapor, M., Jeremie, A., Grauges Pous, E., Bruno, G. E., De Robertis, G., Diacono, D., Donvito, G., Fusco, P., Gargano, F., Giordano, F., Loddo, F., Loparco, F., Maggi, G. P., Manzari, V., Mazziotta, M. N., Nappi, E., Palano, A., Santeramo, B., Sgura, I., Silvestris, L., Spinoso, V., Eigen, G., Zalieckas, J., Zhuo, Z., Jenkovszky, L., Balbi, G., Boldini, M., Bonacorsi, D., Cafaro, V., D'Antone, I., Dallavalle, G. M., Di Sipio, R., Fabbri, F., Fabbri, L., Gabrielli, A., Galli, D., Giacomelli, P., Giordano, V., Giorgi, F. M., Grandi, C., Lax, I., Lo Meo, S., Marconi, U., Montanari, A., Pellegrini, G., Piccinini, M., Rovelli, T., Semprini Cesari, N., Torromeo, G., Tosi, N., Travaglini, R., Vagnoni, V. M., Valentinetti, S., Villa, M., Zoccoli, A., Caron, J. -F., Hearty, C., P. F. -T., Lu, Mattison, T. S., Mckenna, J. A., R. Y. -C., So, Barnyakov, M. Yu., Blinov, V. E., Botov, A. A., Druzhinin, V. P., Golubev, V. B., Kononov, S. A., Kravchenko, E. A., Levichev, E. B., Onuchin, A. P., Serednyakov, S. I., Shtol, D. A., Skovpen, Y. I., Solodov, E. P., Cardini, A., Carpinelli, M., Chao, D. S. -T., Cheng, C. H., Doll, D. A., Echenard, B., Flood, K., Hanson, J., Hitlin, D. G., Ongmongkolkul, P., Porter, F. C., Zhu, R. Y., Randazzo, N., De La Cruz Burelo, E., Zheng, Y., Campos, P., De Silva, M., Kathirgamaraju, A., Meadows, B., Pushpawela, B., Shi, Y., Sokoloff, M., Lopez Castro, G., Ciaschini, V., Franchini, P., Giacomini, F., Paolini, A., Calderon Polania, G. A., Laczek, S., Romanowicz, P., Szybinski, B., Czuchry, M., Flis, L., Harezlak, D., Kocot, J., Radecki, M., Sterzel, M., Szepieniec, T., Szymocha, T., Wójcik, P., Andreotti, M., Baldini, W., Calabrese, R., Carassiti, V., Cibinetto, G., Cotta Ramusino, A., Evangelisti, F., Gianoli, A., Luppi, E., Malaguti, R., Manzali, M., Melchiorri, M., Munerato, M., Padoan, C., Santoro, V., Tomassetti, L., Beretta, M. M., Biagini, M., Boscolo, M., Capitolo, E., de Sangro, R., Esposito, M., Felici, G., Finocchiaro, G., Gatta, M., Gatti, C., Guiducci, S., Lauciani, S., Patteri, P., Peruzzi, I., Piccolo, M., Raimondi, P., Rama, M., Sanelli, C., Tomassini, S., Fabbricatore, P., Delepine, D., Reyes Santos, M. A., Chrzaszcz, M., Grzymkowski, R., Knap, P., Kotula, J., Lesiak, T., Ludwin, J., Michalowski, J., Pawlik, B., Rachwal, B., Stodulski, M., Wiechczynski, J., Witek, M., Zawiejski, L., Zdybal, M., Aushev, V. Y., Ustynov, A., Arnaud, N., Bambade, P., Beigbeder, C., Bogard, F., Borsato, M., Breton, D., Brossard, J., Burmistrov, L., Charlet, D., Chaumat, V., Dadoun, O., El Berni, M., Maalmi, J., Puill, V., Rimbault, C., Stocchi, A., Tocut, V., Variola, A., Wallon, S., Wormser, G., Grancagnolo, F., Ben-Haim, E., Sitt, S., Baylac, M., Bourrion, O., Deconto, J. -M., Gomez Martinez, Y., Monseu, N., Muraz, J. -F., Real, J. -S., Vescovi, C., Cenci, R., Jawahery, A., Roberts, D., Twedt, E. 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Physics - Instrumentation and Detectors ,High Energy Physics - Experiment - Published
- 2013
12. Expression of Interest for Evolution of the Mu2e Experiment
- Author
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Abusalma, F., Ambrose, D., Artikov, A., Bernstein, R., Blazey, G. C., Bloise, C., Boi, S., Bolton, T., Bono, J., Bonventre, R., Bowring, D., Brown, D., Byrum, K., Campbell, M., Caron, J. -F, Cervelli, F., Chokheli, D., Ciampa, K., Ciolini, R., Coleman, R., Cronin-Hennessy, D., Culbertson, R., Cummings, M. A., Daniel, A., Davydov, Y., Demers, S., Denisov, D., Denisov, S., Di Falco, S., Diociaiuti, E., Djilkibaev, R., Donati, S., Donghia, R., Drake, G., Dukes, E. C., Echenard, B., Edmonds, A., Ehrlich, R., Evdokimov, V., Fabbricatore, P., Ferrari, A., Frank, M., Gaponenko, A., Gatto, C., Giorgio, Z., Giovannella, S., Giusti, V., Glass, H., Glenzinski, D., Goodenough, L., Group, C., Happacher, F., Harkness-Brennan, L., Hedin, D., Heller, K., Hitlin, D., Hocker, A., Ryan Hooper, Horton-Smith, G., Hu, C., Hung, P. Q., Hungerford, E., Jenkins, M., Jones, M., Kargiantoulakis, M., Khaw, K. S., Kiburg, B., Kolomensky, Y., Kozminski, J., Kutschke, R., Lancaster, M., Lin, D., Logashenko, I., Lombardo, V., Luca, A., Lukicov, G., Lynch, K., Martini, M., Mazzacane, A., Miller, J., Miscetti, S., Morescalchi, L., Mott, J., Mueller, S. E., Murat, P., Nagaslaev, V., Neuffer, D., Oksuzian, Y., Pasciuto, D., Pedreschi, E., Pezzullo, G., Pla-Dalmau, A., Pollack, B., Popov, A., Popp, J., Porter, F., Prebys, E., Pronskikh, V., Pushka, D., Quirk, J., Rakness, G., Ray, R., Ricci, M., Röhrken, M., Rusu, V., Saputi, A., Sarra, I., Schmitt, M., Spinella, F., Stratakis, D., Strauss, T., Talaga, R., Tereshchenko, V., Tran, N., Tschirhart, R., Usubov, Z., Velasco, M., Wagner, R., Wang, Y., Werkema, S., Whitmore, J., Winter, P., Xia, L., Zhang, L., Zhu, R. -Y, Zutshi, V., and Zwaska, R.
- Subjects
High Energy Physics - Experiment (hep-ex) ,Physics - Instrumentation and Detectors ,Physics::Instrumentation and Detectors ,Physics::Accelerator Physics ,FOS: Physical sciences ,High Energy Physics::Experiment ,Instrumentation and Detectors (physics.ins-det) ,High Energy Physics - Experiment - Abstract
We propose an evolution of the Mu2e experiment, called Mu2e-II, that would leverage advances in detector technology and utilize the increased proton intensity provided by the Fermilab PIP-II upgrade to improve the sensitivity for neutrinoless muon-to-electron conversion by one order of magnitude beyond the Mu2e experiment, providing the deepest probe of charged lepton flavor violation in the foreseeable future. Mu2e-II will use as much of the Mu2e infrastructure as possible, providing, where required, improvements to the Mu2e apparatus to accommodate the increased beam intensity and cope with the accompanying increase in backgrounds., Comment: 17 pages, 4 figures, 1 table; Submitted to the Fermilab Physics Advisory Committee
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