Polarizabilities as Probes for P, T, and PT Violation

Sebastian Lahs, Daniel Comparat
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Abstract

Searches for violations of the fundamental symmetries of parity P and time reversal T in atomic and molecular systems provide a powerful tool for precise measurements of the physics of and beyond the standard model. In this work, we investigate how these symmetry violations affect the response of atoms and molecules to applied electric and magnetic fields. We recover well-known observables like the P-odd, T-odd spin-electric field coupling that is used for searches of the electron electric dipole moment (eEDM) or the effect of P-odd, T-even optical rotation in atomic gases. Besides these, we obtain several other possible observables. This includes, in particular, effects that can only be seen when using oscillating or inhomogeneous fields.
作为 P、T 和 PT Violation 探针的极化率
在原子和分子系统中寻找违反奇偶性 P 和时间反转 T 基本对称性的现象,为精确测量标准模型及其以外的物理学提供了强有力的工具。在这项工作中,我们研究了这些对称性违反如何影响原子和分子对外加电场和磁场的响应。我们恢复了一些众所周知的观测数据,如用于研究电子电偶极矩(eEDM)的 Podd、Todd 自旋电场耦合,或原子气体中 Podd、T-even 光旋转的影响。除此之外,我们还获得了其他一些可能的观测值。其中尤其包括只有在使用振荡或不均匀场时才能看到的效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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