arXiv:1412.4673·v2·Instrumentation and Detectors
A Long Baseline Neutrino Oscillation Experiment Using J-PARC Neutrino Beam and Hyper-Kamiokande
Hyper-Kamiokande Working Group: K. Abe🇯🇵 · H. Aihara🇯🇵 · C. Andreopoulos🇬🇧 · I. Anghel🇺🇸 · A. Ariga🇨🇭 · T. Ariga🇨🇭 · R. Asfandiyarov🇨🇭 · M. Askins🇺🇸 · J. J. Back🇬🇧 · P. Ballett🇬🇧 · M. Barbi🇨🇦 · G. J. Barker🇬🇧
Abstract
Hyper-Kamiokande will be a next generation underground water Cherenkov detector with a total (fiducial) mass of 0.99 (0.56) million metric tons, approximately 20 (25) times larger than that of Super-Kamiokande. One of the main goals of Hyper-Kamiokande is the study of asymmetry in the lepton sector using accelerator neutrino and anti-neutrino beams. In this document, the physics potential of a long baseline neutrino experiment using the Hyper-Kamiokande detector and a neutrino beam from the J-PARC proton synchrotron is presented. The analysis has been updated from the previous Letter of Intent [K. Abe et al., arXiv:1109.3262 [hep-ex]], based on the experience gained from the ongoing T2K experiment. With a total exposure of 7.5 MW 10 sec integrated proton beam power (corresponding to protons on target with a 30 GeV proton beam) to a -degree off-axis neutrino beam produced by the J-PARC proton synchrotron, it is expected that the phase can be determined to better than 19 degrees for all possible values of , and violation can be established with a statistical significance of more than () for () of the parameter space.
Comments: Document submitted to 18th J-PARC PAC meeting in May 2014. 50 pages, 41 figures