학술논문

Proposal for an Extended Run of T2K to $20\times10^{21}$ POT
Document Type
Working Paper
Author
Abe, K.Aihara, H.Amji, A.Amey, J.Andreopoulos, C.Antonova, M.Aoki, S.Atherton, A.Ban, S.Barbato, F. C. T.Barbi, M.Barker, G. J.Barr, G.Bartet-Friburg, P.Batkiewicz, M.Berardi, V.Bhadra, S.Bienstock, S.Blondel, A.Bolognesi, S.Bordoni, S.Boyd, S. B.Brailsford, D.Bravar, A.Bronner, C.Avanzini, M. BuizzaCalcutt, J.Calland, R. G.Calvet, D.Campbell, T.Cao, S.Cartwright, S. L.Castillo, R.Catanesi, M. G.Cervera, A.Checchia, C.Cherdack, D.Chikuma, N.Christodoulou, G.Clifton, A.Coleman, J.Collazuol, G.Coplowe, D.Cremonesi, L.Cudd, A.Dabrowska, A.Delbart, A.De Rosa, G.Dealtry, T.Denner, P. F.Dennis, S. R.Densham, C.Dewhurst, D.Di Lodovico, F.Dolan, S.Drapier, O.Duffy, K. E.Dumarchez, J.Dunkman, M.Dziewiecki, M.Emery-Schrenk, S.Fernanddez, P.Feusels, T.Finch, A. J.Fiorentini, G. A.Fiorillo, G.Fitton, M.Friend, M.Fujii, Y.Fukuda, D.Fukuda, Y.Garcia, A.Giganti, C.Gizzarelli, F.Gonin, M.Grant, N.Hadley, D. R.Haegel, L.Haigh, M. D.Hansen, D.Harada, J.Hartz, M.Hasegawa, T.Hastings, N. C.Hayashino, T.Hayato, Y.Hiraki, T.Hiramoto, A.Hirota, S.Hogan, M.Holeczek, J.Hosomi, F.Huang, K.Ichikawa, A. K.Ikeda, M.Imber, J.Insler, J.Intonti, R. A.Ishida, T.Ishii, T.Iwai, E.Iwamoto, K.Izmaylov, A.Jamieson, B.Jiang, M.Johnson, S.Jo, J. H.Jonsson, P.Jung, C. K.Kabirnezhad, M.Kaboth, A. C.Kajita, T.Kakuno, H.Kameda, J.Katori, T.Kearns, E.Khabibullin, M.Khotjantsev, A.Kim, H.King, S.Kisiel, J.Knight, A.Knox, A.Kobayashi, T.Koch, L.Koga, T.Konaka, A.Kondo, K.Kormos, L. L.Korzenev, A.Koshio, Y.Kowalik, K. L.Kropp, W.Kudenko, Y.Kurjata, R.Kutter, T.Labarga, L.Lagoda, J.Lamont, I.Lamoureux, M.Larkin, E.Lasorak, P.Laveder, M.Lawe, M.Lindner, T.Liptak, Z. J.Litchfield, R. P.Li, X.Longhin, A.Lopez, J. P.Lou, T.Ludovici, L.Lu, X.Magaletti, L.Mahn, K.Malek, M.Manly, S.Marino, A. D.Martin, J. F.Martins, P.Martynenko, S.Maruyama, T.Matveev, V.Mavrokoridis, K.Ma, W. Y.Mazzucato, E.McCarthy, M.McCauley, N.McFarland, K. S.McGrew, C.Mefodiev, A.Metelko, C.Mezzetto, M.Mijakowski, P.Minamino, A.Mineev, O.Mine, S.Missert, A.Miura, M.Moriyama, S.Mueller, Th. A.Nagai, Y.Nakadaira, T.Nakahata, M.Nakamura, K. G.Nakamura, K.Nakamura, K. D.Nakanishi, Y.Nakayama, S.Nakaya, T.Nakayoshi, K.Nantais, C.Nishikawa, K.Nishimura, Y.Novella, P.Nowak, J.O'Keeffe, H. M.Ohta, R.Okumura, K.Okusawa, T.Ovsyannikova, T.Owen, R. A.Oyama, Y.Palladino, V.Palomino, J. L.Paolone, V.Parker, W.Patel, N. D.Pavin, M.Payne, D.Perkin, J. D.Pickard, L.Pickering, L.Guerra, E. S. PinzonPopov, B.Posiadala-Zezula, M.Poutissou, J. -M.Poutissou, R.Przewlocki, P.Quilain, B.Radermacher, T.Radicioni, E.Ratoff, P. N.Ravonel, M.Rayner, M. A.Reinherz-Aronis, E.Riccio, C.Rojas, P.Rondio, E.Rossi, B.Roth, S.Ruggeri, A. C.Rychter, A.Sacco, R.Sakashita, K.Sánchez, F.Scantamburlo, E.Scholberg, K.Schwehr, J.Scott, M.Seiya, Y.Sekiguchi, T.Sekiya, H.Sgalaberna, D.Shah, R.Shaikhiev, A.Shaker, F.Shaw, D.Shiozawa, M.Shirahige, T.Short, S.Smy, M.Sobczyk, J. T.Sobel, H.Southwell, L.Steinmann, J.Stewart, T.Stowell, P.Suda, Y.Suvorov, S.Suzuki, A.Suzuki, S. Y.Suzuki, Y.Szeptycka, M.Tacik, R.Tada, M.Takeda, A.Takeuchi, Y.Tamura, R.Tanaka, H. K.Tanaka, H. A.Terhorst, D.Terri, R.Thakore, T.Thompson, L. F.Toki, W.Tomura, T.Touramanis, C.Tsukamoto, T.Tzanov, M.Uchida, M. A.Uchida, Y.Vagins, M.Vacheret, A.Vallari, Z.Vasseur, G.Wachala, T.Walter, C. W.Wark, D.Wascko, M. O.Weber, A.Wendell, R.Wilkes, R. J.Wilking, M. J.Wilson, J. R.Wilson, R. J.Wret, C.Yamada, Y.Yamamoto, K.Yamamoto, M.Yanagisawa, C.Yano, T.Yen, S.Yershov, N.Yokoyama, M.Yoo, J.Yoshida, K.Yuan, T.Yu, M.Zalewska, A.Zalipska, J.Zambelli, L.Zaremba, K.Ziembicki, M.Zimmerman, E. D.Zito, M.
Source
Subject
High Energy Physics - Experiment
Physics - Instrumentation and Detectors
Language
Abstract
Recent measurements by the T2K neutrino oscillation experiment indicate that CP violation in neutrino mixing may be observed in the future by long-baseline neutrino oscillation experiments. We propose an extension to the currently approved T2K running from $7.8\times 10^{21}~\mbox{POT}$ to $20\times 10^{21}~\mbox{POT}$, aiming at initial observation of CP violation with 3$\,\sigma$ or higher significance for the case of maximum CP violation. The program also contains a measurement of mixing parameters, $\theta_{23}$ and $\Delta m^2_{32}$, with a precision of 1.7$^\circ$ or better and 1%, respectively. With accelerator and beamline upgrades, as well as analysis improvements, this program would occur before the next generation of long-baseline neutrino oscillation experiments that are expected to start operation in 2026.
Comment: 68 pages, 31 figures