论文标题
使用沙丘,T2HK和T2HKK中的互补性增强对Leptonic CP违规的敏感性
Enhancing Sensitivity to Leptonic CP Violation using Complementarity among DUNE, T2HK, and T2HKK
论文作者
论文摘要
在现代反应堆实验中发现了具有里程碑意义的非零$θ_{13} $之后,在过去的十年中,已经实现了中微子质量混合参数的前所未有的精度。这为在下一代长基线中微子振荡实验中发现缓慢的CP违规(LCPV)奠定了基础。在这项工作中,我们详细探讨了轴上沙丘和离轴T2HK实验之间可能的互补性,以增强对LCPV抑制$θ_{23}-Δ__{\ Mathrm {cp}}} $ degeneracy的敏感性。我们发现,这些实验都无法单独实现3 $σ$ LCPV的里程碑,至少可以在$ [ - 180^{\ circ}的整个范围内选择$δ_ {\ mathrm {cp}} $,其整个范围为180^{\ circ},180^{\ circ}] $,并与他们的标题性expositations和Systonal Uncecties。但是,对于$θ_{23} $的所有值,它们的组合可以达到相同的成就,只有一半的名义暴露。我们观察到,与沙丘结合使用的拟议的T2HKK设置可以将CP覆盖范围进一步提高到80%以上,而仅有一半的名义暴露。我们详细研究了$δ_{\ Mathrm {cp}} $中的覆盖范围,对于$ \ ge $ 3 $ 3 $σ$ LCPV取决于$θ_{23} $的选择,暴露时间,中微子中的最佳运行时间,中微子中的中微子和抗红模式的最佳运行时间,以及在这些隔离和组合中的系统不实行。我们发现,在外观模式下的系统不确定性提高了2.7%的情况下,独立的T2HK设置可以为所有$θ_{23} $的CP覆盖率提供约75%的CP覆盖范围。我们还讨论了在消失通道中的外观通道和外在CP不对称性中内在,外在和总CP不对称的关键作用,同时分析了我们的结果。
After the landmark discovery of non-zero $θ_{13}$ by the modern reactor experiments, unprecedented precision on neutrino mass-mixing parameters has been achieved over the past decade. This has set the stage for the discovery of leptonic CP violation (LCPV) at high confidence level in the next-generation long-baseline neutrino oscillation experiments. In this work, we explore in detail the possible complementarity among the on-axis DUNE and off-axis T2HK experiments to enhance the sensitivity to LCPV suppressing the $θ_{23}-δ_{\mathrm{CP}}$ degeneracy. We find that none of these experiments individually can achieve the milestone of 3$σ$ LCPV for at least 75% choices of $δ_{\mathrm{CP}}$ in its entire range of $[-180^{\circ} , 180^{\circ}]$, with their nominal exposures and systematic uncertainties. However, their combination can attain the same for all values of $θ_{23}$ with only half of their nominal exposures. We observe that the proposed T2HKK setup in combination with DUNE can further increase the CP coverage to more than 80% with only half of their nominal exposures. We study in detail how the coverage in $δ_{\mathrm{CP}}$ for $\ge$ 3$σ$ LCPV depends on the choice of $θ_{23}$, exposure, optimal runtime in neutrino and antineutrino modes, and systematic uncertainties in these experiments in isolation and combination. We find that with an improved systematic uncertainty of 2.7% in appearance mode, the standalone T2HK setup can provide a CP coverage of around 75% for all values of $θ_{23}$. We also discuss the pivotal role of intrinsic, extrinsic, and total CP asymmetries in the appearance channel and extrinsic CP asymmetries in the disappearance channel while analyzing our results.