Neutrino Oscillation Physics Potential of the T2K Experiment
K.Abe, J.Adam, H.Aihara, T.Akiri, C.Andreopoulos, S.Aoki, A.Ariga,, S.Assylbekov, D.Autiero, M.Barbi, G.J.Barker, G.Barr, P.Bartet-Friburg,, M.Bass, M.Batkiewicz, F.Bay, V.Berardi, B.E.Berger, S.Berkman, S.Bhadra,, F.d.M.Blaszczyk, A.Blondel, C.Bojechko, S.Bordoni, S.B.Boyd

TL;DR
The paper evaluates the T2K experiment's potential to measure neutrino oscillation parameters, including CP violation, mass hierarchy, and mixing angles, with high precision and combined data analysis.
Contribution
It provides detailed sensitivity projections for T2K to measure key neutrino oscillation parameters and explores the benefits of combining T2K data with NOvA.
Findings
T2K can measure $ heta_{23}$ and $ riangle m^2_{32}$ with high precision.
Sensitivity to $ m{ heta_{CP}}$ is significant over a wide range.
Combined T2K and NOvA data enhances the detection potential for CP violation.
Abstract
The observation of the recent electron neutrino appearance in a muon neutrino beam and the high-precision measurement of the mixing angle have led to a re-evaluation of the physics potential of the T2K long-baseline neutrino oscillation experiment. Sensitivities are explored for CP violation in neutrinos, non-maximal , the octant of , and the mass hierarchy, in addition to the measurements of , , and , for various combinations of -mode and \(\bar{\nu}\)-mode data-taking. With an exposure of ~protons-on-target, T2K can achieve 1- resolution of 0.050(0.054) on and on for 100\%(50\%) neutrino beam mode running assuming and …
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