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首页> 外文期刊>Physical review, D >Can we probe intrinsic CP and T violations and nonunitarity at long baseline accelerator experiments?
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Can we probe intrinsic CP and T violations and nonunitarity at long baseline accelerator experiments?

机译:我们可以在长基线加速器实验中探讨内在的CP和T违规和非私种吗?

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摘要

One of the fundamental parameters entering the neutrino oscillation framework is the leptonic CP phase δ13, and its measurement is an important goal of the planned long baseline experiments. It should be noted that ordinary matter effects complicate the determination of this parameter, and there are studies in the literature that deal with separation of intrinsic vs extrinsic CP violation. It is important to investigate the consequences of new physics effects that can not only hamper the measurement of δ_(13) but also impact the consequences of discrete symmetries such as CP, T, and unitarity in different oscillation channels. In the present work, we explore these discrete symmetries and implications on unitarity in the presence of two new physics scenarios (nonstandard interaction in propagation and the presence of sterile neutrinos) that serve as good examples of going beyond the standard scenario in different directions. We uncover the impact of new physics scenarios on disentangling intrinsic and extrinsic CP violation.
机译:进入中微子振荡框架的基本参数之一是Leptonic CP阶段Δ13,其测量是计划长基线实验的重要目标。应注意,普通物质效应使该参数的测定复杂化,并且在文献中有研究,处理内在的VS外在CP违规的分离。重要的是要研究新物理效应的后果,这不仅可以阻止Δ_(13)的测量,而且还会影响不同振荡通道中的离散对称等离散对称的后果。在目前的工作中,我们在两个新的物理场景存在下探讨了这些离散的对称性和对统一性的影响(传播中的非标准相互作用以及无菌中微子的存在),其作为超越不同方向的标准场景的良好示例。我们揭示了新物理情景对解散内在和外在CP违规的影响。

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