论文标题
基本对称性的精确自旋实验测试中的一般相对性效应
General relativity effects in precision spin experimental tests of fundamental symmetries
论文作者
论文摘要
搜索$ p $ - 和$ cp(t)$ - 在所有离散的磁极时刻允许的磁性偶极矩中,违反原子,颗粒和核的电动偶极矩(EDM),其灵敏度最高为$ 10^{ - 15} $,是现代物理学的主题问题之一。根据萨哈罗夫(Sakharov)的说法,$ cp $侵略是大爆炸宇宙学范式中男性生成的三个关键标准之一。这三个标准均由标准模型(SM)支持,但未能描述观察到的宇宙的Baryon不对称性。这被认为是一个强有力的论点,支持存在$ cp $ - 符合对称性的破坏机制,这可以导致原子,颗粒和核的可测量EDM。直接搜索带电颗粒和核的EDM仅在存储环(Cozy,NICA)中才有可能。在JEDI合作在舒适同步器的成功研究之后,最前沿的是在静电存储环中搜索质子EDM,质子旋转在魔法敏感性下冷冻的质子旋转具有预测的灵敏度$ d_p \ sim 10^{ - 29}}^{ - 29} \,e \ cdot $ cm。在简要介绍了$ CP $侵入物理学和Baryogenation之后,该评论详细介绍了对陆地重力的旋转动力学的重要贡献,以及在超敏感搜索带电颗粒和中子的EDM中,地球旋转的新效果。非常值得注意的是,对于对质子EDM的预测敏感性,这些虚假的EDM效应可以超过质子EDM的信号,并与超低中子实验中的EDM贡献相当。我们还讨论了进攻性旋转作为轴突样暗物质的检测器的作用,并考虑了量子引力异常在致密物质流体动力学和自旋现象中的应用。
A search for the $P$- and $CP(T)$-violating electric dipole moments (EDM) of atoms, particles and nuclei with sensitivity up to $10^{-15}$ in units of magnetic dipole moments, allowed by all discrete symmetries, is one of the topical problems of modern physics. According to Sakharov, $CP$-violation is one of the three key criteria of baryogenesis in generally accepted paradigm of the Big Bang cosmology. All three criteria are supported by the Standard Model (SM), but it fails to describe the observed baryon asymmetry of the Universe. This is regarded a strong argument in favor of existence of $CP$-symmetry breaking mechanisms beyond minimal SM, which can lead to measurable EDMs of atoms, particles and nuclei. Direct searches for EDM of charged particles and nuclei are possible only in storage rings (COSY, NICA). After successful studies by the JEDI collaboration at the COSY synchrotron, at the forefront is a search for the proton EDM in an electrostatic storage ring with the proton spin frozen at the magic energy with projected sensitivity $d_p\sim 10^{-29}\,e\cdot$cm. Following a brief introduction to the $CP$-violation physics and the baryogenesis, the review presents a detailed discussion of significant contributions to the spin dynamics from the terrestrial gravity along with the new effects of Earth's rotation in ultrasensitive searches for the EDM of charged particles and neutrons. Quite remarkably, for the projected sensitivity to the proton EDM, these false EDM effects can by one to two orders of magnitude exceed the signal of the proton EDM, and become comparable to an EDM contribution in experiments with ultracold neutrons. We also discuss the role of a precessing spin as a detector of the axion-like dark matter, and consider applications of the quantum gravitational anomalies to the dense matter hydrodynamics and the spin phenomena in the non-central nuclear collisions.