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New physics probes: Atomic parity violation, polarized electron scattering and neutrino-nucleus coherent scattering

机译:新物理探针:原子奇偶校验侵权,偏振电子散射和中微核 - 核相干散射

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摘要

Atomic Parity Violation (APV) is usually quantified in terms of the weak nuclear charge Q(W) of a nucleus, which depends on the coupling strength between the atomic electrons and quarks. In this work, we review the importance of APV to probing new physics using effective field theory. Furthermore, we correlate our findings with the results from neutrino-nucleus coherent scattering. We revisit signs of parity violation in polarized electron scattering and show how precise measurements on the Weinberg's angle give rise to competitive bounds on light mediators over a wide range of masses and interactions strengths. Our bounds are firstly derived in the context of simplified setups and then applied to several concrete models, namely Dark Z, Two Higgs Doublet Model-U(1)(X) and 3-3-1, considering both light and heavy mediator regimes. (C) 2020 The Authors. Published by Elsevier B.V.
机译:原子奇偶校验违规(APV)通常就核的弱核电Q(W)而定量,这取决于原子电子和夸克之间的耦合强度。 在这项工作中,我们通过有效的场理论审查APV对新物理学的重要性。 此外,我们将我们的发现与中微子 - 核相干散射的结果相关联。 我们重新审视偏光电子散射中奇偶界违规的迹象,并显示了在广泛的群众和相互作用优势上的光调解器上的竞争范围内的精确测量。 我们的界限首先在简化设置的背景下得出,然后应用于几种具体模型,即暗Z,两种Higgs双板模型-U(1)(x)和3-3-1,考虑到光和重型调解员制度。 (c)2020作者。 由elsevier b.v出版。

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