Accès ouvert déclaré
2013
article
The Long-Baseline Neutrino Experiment: Exploring Fundamental Symmetries of the Universe
LBNE Collaboration, Corey Adams, David Adams, Tarek Akiri, T. Alion, Kris Anderson, C. Andreopoulos, Mike Andrews, Ioana Anghel, João Carlos Costa dos Anjos, M. Antonello, E. Arrieta-Diaz, M. Artuso, Jonathan Asaadi, X. Bai, B. Baibussinov, M. Baird, Baha Balantekin, B. Baller, Brian J. Baptista, Gary Barker, William A. Barletta, G. Barr, L. Bartoszek, A. Bashyal, Matt Bass, Vincenzo Bellini, P. Benetti, Bruce E. Berger, M. Bergevin, Eileen Berman, H. Berns, Adam Bernstein, Robert Bernstein, V. Bhatnagar, J. M. Bian, M. Bishai, A. Blake, Flor Blaszczyk, E. Blaufuss, Bruce Bleakley, Steve Blusk, V. Bocean, F. Boffelli, J. Boissevain, Timothy Bolton, M. Bonesini, S. B. Boyd, A. Brandt, R. Breedon, C. Bromberg, Ralph Adams Brown, Giullia Brunetti, N. J. Buchanan, B Bugg, J.K. Busenitz, E. Calligarich, L. Camilleri, Giada Carminati, R. Carr, C. Castromonte, F. Cavanna, S. Centro, Alex Chen, H. Chen, Kai Chen, D. Cherdack, Cheng-Yi Chi, Sam Childress, Brajesh Chandra Choudhary, G. Christodoulou, C. D. Christofferson, E. Church, D. Cline, T. E. Coan, A.G. Cocco, J. A. B. Coelho, Stephen Coleman, J. M. Conrad, Mark Convery, R. Corey, L. A. Corwin, Jack Cranshaw, D. Cronin-Hennessy, A. Curioni, H. da Motta, T. Davenne, G. S. Davies, S. Dazeley, K. De, André de Gouvêa, J. K. de Jong, D. M. DeMuth, Chris Densham, M. Diwan, Zelimir Djurcic, R. Dolfini, J. Dolph, G. Drake, Stephen T. Dye, Hongue Dyuang, Daniel Edmunds, S. R. Elliott, M. Elnimr, S. C. Eno, S. Enomoto, C. O. Escobar, J. J. Evans, A. Falcone, Lisa Falk, A. Farbin, C. Farnese, A. Fava, John Felde, S. Fernandes, F. Ferroni, F. Feyzi, L. Fields, A.J. Finch, M. D. Fitton, B. T. Fleming, Jack Fowler, W. Fox, Alex Friedland, Stu Fuess, B. K. Fujikawa, H. Gallagher, Raj Gandhi, G. T. Garvey, Victor M. Gehman, Gianluigi De Geronimo, D. Gibin, Ronald G. Gill, R. A. Gomes, J. T. M. Goon, N. Graf, M. T. Graham, Rik Gran, C. Grant, Nick Grant, Herbert B. Greenlee, Leland Greenler, S. Grullon, E. Guardincerri, V. Guarino, E. Guarnaccia, G.P. Guedes, R. Guénette, A. Guglielmi, M. M. Guzzo, A. Habig, R. Hackenburg, H. K. Hadavand, A. A. Hahn, Martin Haigh, T. J. Haines, Thomas Handler, S. Hans, J. Hartnell, John L. Harton, Robert Hatcher, Athans Hatzikoutelis, S. Hays, E. Hazen, M. Headley, A. Heavey, K. M. Heeger, J. Heise, Robert Hellauer, V Hewes, A. Himmel, M. Hogan, P. C. de Holanda, A. Holin, G. A. Horton-Smith, J. Howell, P. Hurh, Joey Huston, J. Hylen, Richard Imlay, Jonathan Insler, G. Introzzi, Zeynep Isvan, C. M. Jackson, John V. Jacobsen, D. E. Jaffe, Cat James, Chun-Min Jen, M. Johnson, Randy L. Johnson, Robert A. Johnson, Scott E. Johnson, William Johnston, John Johnstone, Ben Jones, H. Jostlein, T. R. Junk, R.W. Kadel, Karl Kaess, G. Karagiorgi, Jarek Kaspar, T. Katori, Boris Kayser, E. Kearns, P. Keener, E. Kemp, S. Kettell, Mike Kirby, J. Klein, G. Koizumi, S. Köpp, L. L. Kormos, William Kropp, V. A. Kudryavtsev, Ashok Kumar, Jason Kumar, Thomas Kutter, F. La Zia, K. Lande, C. Lane, Richard C. Lanza, T. Latorre, J. G. Learned, David M. Lee, Kevin Lee, Qizhong Li, Shaorui Li, Yichen Li, Z. Li, J. Libo, S. Linden, J. M. Link, L. Littenberg, Hu Liu, Qiuguang Liu, Tiankuan Liu, John LoSecco, W. C. Louis, B. Lundberg, Tracy Lundin, J Lundy, A.A. Machado, Cara Nichole Maesano, S. Magill, G. Mahler, D. Malon, Stephen Malys, F. Mammoliti, S. Mandal, Anthony Mann, P. Mantsch, A. Marchionni, William Marciano, C. Mariani, J. Maricic, A. D. Marino, Marvin L. Marshak, J. Marshall, Shiegenobu Matsuno, C. Mauger, K. Mavrokoridis, Nate Mayer, Neil McCauley, E. McCluskey, Kirk T. McDonald, K. S. McFarland, David McKee, Robert McKeown, Robert McTaggart, R. Mehdiyev, Dongming Mei, A. Menegolli, Guang Wei Meng, Yixiong Meng, David Mertins, M. D. Messier, William W. Metcalf, William H. Miller, Geoff Mills, Sanjib Mishra, N. Mokhov, C. Montanari, David Montanari, C. D. Moore, J. G. Morfín, Ben Morgan, W. Morse, Zander Moss, Célio A. Moura, S. L. Mufson, David A. Muller, J. Musser, D. Naples, Jim Napolitano, M. Newcomer, R. J. Nichol, T.C. Nicholls, Evan Niner, Barry Norris, J. Nowak, H. M. O’Keeffe, Roberto Cardoso de Oliveira, Travis Olson, Brian Page, Sandip Pakvasa, O. Palamara, Vittorio Paolone, Vaia Papadimitriou, Seongtae Park, Z. Parsa, K. Partyka, Bob Paulos, Žarko Pavlović, S. J. M. Peeters, Andy Perch, J. D. Perkin, R. Petti, Andre Petukhov, F. Pietropaolo, R. Plunkett, Chris Polly, S. Pordes, M. Potekhin, R. Potenza, Arati Prakash, O. Prokofiev, X. Qian, J. L. Raaf, V. Radeka, Igor Rakhno, Y. Ramachers, R. Rameika, J. Ramsey, A. Rappoldi, G.L. Raselli, P. N. Ratoff, Shreyas Ravindra, B. Rebel, Juergen Reichenbacher, D. Reitzner, S. Rescia, Martin Richardson, Kieth Rielage, Kurt Riesselmann, Matt Robinson, Leon Rochester, M. Ronquest, M. Rosen, M. Rossella, Carlo Rubbia, Russ Rucinski, S. Sahijpal, H. Sahoo, P. Sala, Delia Salmiera, Nicholas Samios, M. C. Sánchez, A. Scaramelli, H. Schellman, R. L. Schmitt, D. Schmitz, Jack Schneps, K. Scholberg, E. Segreto, Stanley Seibert, Liz Sexton-Kennedy, Mike Shaevitz, P. Shanahan, Rahul Sharma, Terri Shaw, N. Simos, Venktesh Singh, G. Sinnis, W. Sippach, T. Skwarnicki, Michael Smy, Henry Sobel, M. Söderberg, J. Sondericker, W. Sondheim, A. Sousa, N. J. C. Spooner, Michelle Stancari, I. Stancu, Dorota Stefan, Andy Stefanik, J. Stewart, S. Stone, James Strait, M. Strait, S. Striganov, G.W. Sullivan, Yujing Sun, L. Suter, Andrew Svenson, R. Svoboda, Barbara Szczerbinska, A. M. Szelc, M. Szydagis, S. Söldner‐Rembold, R. L. Talaga, M. C. Tamsett, S. Tariq, R. Tayloe, C. Taylor, David L. Taylor, A. Teymourian, Harry Themann, M. D. Thiesse, Jenny Thomas, L.F. Thompson, M. Thomson, C. Thorn, Matt Thorpe, Xinchun Tian, Doug Tiedt, Walter Toki, N. Tolich, M. Torti, M. Toups, C. Touramanis, M. Tripathi, I. S. Tropin, Y.-T. Tsai, C. E. Tull, Martin Tzanov, J. Urheim, S. M. Usman, M. R. Vagins, G. A. Valdiviesso, R. Van Berg, Richard van de Water, P. van Gemmeren, F. Varanini, Gary Varner, K. Vaziri, G. Velev, S. Ventura, C. Vignoli, B. Viren, D. Wahl, Abby Waldron, C. W. Walter, Hanguo Wang, Wei Wang, K. Warburton, D. Warner, R. Wasserman, Blake Watson, A. Weber, Wenzhao Wei, Douglas P. Wells, Matthew Wetstein, A. S. White, Hywel White, L. Whitehead, D. Whittington, Joshua Willhite, L. A. Winslow, R. Kevin Wood, E. Worcester, M. Worcester, Tian Xin, Kevin Yarritu, J. Ye, M. Yeh, Bo Yu, Jae Yu, Tianlu Yuan, A. Zani, Geralyn P. Zeller, E. D. Zimmerman, R. Zwaska
56Citations signalées, ce qui n’est pas une note de qualité
80Institutions déclarées
6Pays d’affiliation déclarés
Rattachement africain : us, gb, br, it, in, jp.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
The preponderance of matter over antimatter in the early Universe, the dynamics of the supernova bursts that produced the heavy elements necessary for life and whether protons eventually decay --- these mysteries at the forefront of particle physics and astrophysics are key to understanding the early evolution of our Universe, its current state and its eventual fate. The Long-Baseline Neutrino Experiment (LBNE) represents an extensively developed plan for a world-class experiment dedicated to addressing these questions. LBNE is conceived around three central components: (1) a new, high-intensity neutrino source generated from a megawatt-class proton accelerator at Fermi National Accelerator Laboratory, (2) a near neutrino detector just downstream of the source, and (3) a massive liquid argon time-projection chamber deployed as a far detector deep underground at the Sanford Underground Research Facility. This facility, located at the site of the former Homestake Mine in Lead, South Dakota, is approximately 1,300 km from the neutrino source at Fermilab -- a distance (baseline) that delivers optimal sensitivity to neutrino charge-parity symmetry violation and mass ordering effects. This ambitious yet cost-effective design incorporates scalability and flexibility and can accommodate a variety of upgrades and contributions. With its exceptional combination of experimental configuration, technical capabilities, and potential for transformative discoveries, LBNE promises to be a vital facility for the field of particle physics worldwide, providing physicists from around the globe with opportunities to collaborate in a twenty to thirty year program of exciting science. In this document we provide a comprehensive overview of LBNE's scientific objectives, its place in the landscape of neutrino physics worldwide, the technologies it will incorporate and the capabilities it will possess.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
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Les institutions déclarées
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Les sujets associés
Neutrino Physics ResearchAstrophysics and Cosmic PhenomenaParticle accelerators and beam dynamics