K. Abe, D. Autiero, O. Drapier, J. Dumarchez, S. Emery-Schrenk, V. Galymov, C. Giganti, M. Gonin, J. Marteau, E. Mazzucato, T. Mueller, B. Popov, B. Quilain, G. Vasseur, M. Zito
{"title":"Neutrino Oscillation Physics Potential of the T2K Experiment","authors":"K. Abe, D. Autiero, O. Drapier, J. Dumarchez, S. Emery-Schrenk, V. Galymov, C. Giganti, M. Gonin, J. Marteau, E. Mazzucato, T. Mueller, B. Popov, B. Quilain, G. Vasseur, M. Zito","doi":"10.1093/ptep/ptv031","DOIUrl":null,"url":null,"abstract":"The observation of the recent electron neutrino appearance in a muon neutrino beam and the high-precision measurement of the mixing angle $\\theta_{13}$ 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 $\\sin^22\\theta_{23}$, the octant of $\\theta_{23}$, and the mass hierarchy, in addition to the measurements of $\\delta_{CP}$, $\\sin^2\\theta_{23}$, and $\\Delta m^2_{32}$, for various combinations of $\\nu$-mode and $\\bar{\\nu}$-mode data-taking. With an exposure of $7.8\\times10^{21}$~protons-on-target, T2K can achieve 1-$\\sigma$ resolution of 0.050(0.054) on $\\sin^2\\theta_{23}$ and $0.040(0.045)\\times10^{-3}~\\rm{eV}^2$ on $\\Delta m^2_{32}$ for 100%(50%) neutrino beam mode running assuming $\\sin^2\\theta_{23}=0.5$ and $\\Delta m^2_{32} = 2.4\\times10^{-3}$ eV$^2$. T2K will have sensitivity to the CP-violating phase $\\delta_{\\rm{CP}}$ at 90% C.L. or better over a significant range. For example, if $\\sin^22\\theta_{23}$ is maximal (i.e $\\theta_{23}$=$45^\\circ$) the range is $-115^\\circ<\\delta_{\\rm{CP}}<-60^\\circ$ for normal hierarchy and $+50^\\circ<\\delta_{\\rm{CP}}<+130^\\circ$ for inverted hierarchy. When T2K data is combined with data from the NO$\\nu$A experiment, the region of oscillation parameter space where there is sensitivity to observe a non-zero $\\delta_{CP}$ is substantially increased compared to if each experiment is analyzed alone.","PeriodicalId":49658,"journal":{"name":"Progress of Theoretical Physics","volume":"1 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2015-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1093/ptep/ptv031","citationCount":"9","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Progress of Theoretical Physics","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1093/ptep/ptv031","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 9
Abstract
The observation of the recent electron neutrino appearance in a muon neutrino beam and the high-precision measurement of the mixing angle $\theta_{13}$ 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 $\sin^22\theta_{23}$, the octant of $\theta_{23}$, and the mass hierarchy, in addition to the measurements of $\delta_{CP}$, $\sin^2\theta_{23}$, and $\Delta m^2_{32}$, for various combinations of $\nu$-mode and $\bar{\nu}$-mode data-taking. With an exposure of $7.8\times10^{21}$~protons-on-target, T2K can achieve 1-$\sigma$ resolution of 0.050(0.054) on $\sin^2\theta_{23}$ and $0.040(0.045)\times10^{-3}~\rm{eV}^2$ on $\Delta m^2_{32}$ for 100%(50%) neutrino beam mode running assuming $\sin^2\theta_{23}=0.5$ and $\Delta m^2_{32} = 2.4\times10^{-3}$ eV$^2$. T2K will have sensitivity to the CP-violating phase $\delta_{\rm{CP}}$ at 90% C.L. or better over a significant range. For example, if $\sin^22\theta_{23}$ is maximal (i.e $\theta_{23}$=$45^\circ$) the range is $-115^\circ<\delta_{\rm{CP}}<-60^\circ$ for normal hierarchy and $+50^\circ<\delta_{\rm{CP}}<+130^\circ$ for inverted hierarchy. When T2K data is combined with data from the NO$\nu$A experiment, the region of oscillation parameter space where there is sensitivity to observe a non-zero $\delta_{CP}$ is substantially increased compared to if each experiment is analyzed alone.
最近在μ子中微子束中出现的电子中微子的观测和混合角$\theta_{13}$的高精度测量导致了对T2K长基线中微子振荡实验的物理潜力的重新评估。除了对$\delta_{CP}$、$\sin^2\theta_{23}$和$\Delta m^2_{32}$的测量以及对$\nu$模式和$\bar{\nu}$模式数据采集的各种组合的测量外,还探索了中微子、非极大$\sin^22\theta_{23}$、$\theta_{23}$的八分域和质量层次中的CP违和的灵敏度。通过曝光$7.8\times10^{21}$上的质子,T2K在$\sin^2\theta_{23}$上可以达到0.050(0.054)的1- $\sigma$分辨率,在$\Delta m^2_{32}$上可以达到$0.040(0.045)\times10^{-3}~\rm{eV}^2$的100%(50%) neutrino beam mode running assuming $\sin^2\theta_{23}=0.5$ and $\Delta m^2_{32} = 2.4\times10^{-3}$ eV$^2$. T2K will have sensitivity to the CP-violating phase $\delta_{\rm{CP}}$ at 90% C.L. or better over a significant range. For example, if $\sin^22\theta_{23}$ is maximal (i.e $\theta_{23}$=$45^\circ$) the range is $-115^\circ<\delta_{\rm{CP}}<-60^\circ$ for normal hierarchy and $+50^\circ<\delta_{\rm{CP}}<+130^\circ$ for inverted hierarchy. When T2K data is combined with data from the NO$\nu$A experiment, the region of oscillation parameter space where there is sensitivity to observe a non-zero $\delta_{CP}$ is substantially increased compared to if each experiment is analyzed alone.