首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Probing exotic phenomena at the interface of nuclear and particle physics with the electric dipole moments of diamagnetic atoms: A unique window to hadronic and semi-leptonic CP violation
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Probing exotic phenomena at the interface of nuclear and particle physics with the electric dipole moments of diamagnetic atoms: A unique window to hadronic and semi-leptonic CP violation

机译:用电磁原子的电偶极矩核和粒子物理界面探测异国情调现象:致辐射和半鳞茎CP违规的独特窗口

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摘要

The current status of electric dipole moments of diamagnetic atoms which involves the synergy between atomic experiments and three different theoretical areas, i.e. particle, nuclear and atomic, is reviewed. Various models of particle physics that predict CP violation, which is necessary for the existence of such electric dipole moments, are presented. These include the standard model of particle physics and various extensions of it. Effective hadron level combined charge conjugation (C) and parity (P) symmetry violating interactions are derived taking into consideration different ways in which a nucleon interacts with other nucleons as well as with electrons. Nuclear structure calculations of the CP-odd nuclear Schiff moment are discussed using the shell model and other theoretical approaches. Results of the calculations of atomic electric dipole moments due to the interaction of the nuclear Schiff moment with the electrons and the P and time-reversal (T) symmetry violating tensor-pseudotensor electron-nucleus are elucidated using different relativistic many-body theories. The principles of the measurement of the electric dipole moments of diamagnetic atoms are outlined. Upper limits for the nuclear Schiff moment and tensor-pseudotensor coupling constant are obtained combining the results of atomic experiments and relativistic many-body theories. The coefficients for the different sources of CP violation have been estimated at the elementary particle level for all the diamagnetic atoms of current experimental interest and their implications for physics beyond the standard model is discussed. Possible improvements of the current results of the measurements as well as quantum chromodynamics, nuclear and atomic calculations are suggested.
机译:综述了涉及原子实验与三种不同理论区的协同作用的电磁原子的当前状态,即粒子,核和原子。呈现了各种模型的粒子物理,其预测CP违规,这是存在这种电偶极矩的存在必需的。这些包括粒子物理的标准模型和它的各种延伸。考虑核子与电子和电子的不同方式,推导出致密相互作用的有效强子水平组合电荷缀合(C)和奇偶校验(P)对称性侵犯相互作用。使用壳模型和其他理论方法讨论了CP奇核核席夫时段的核结构计算。原子电偶极偶像的计算结果是由于核席夫时段与电子的相互作用以及P和时间逆转(T)对称性侵犯了致密子 - 假体电子核的对称性。使用不同的相对论多体理论阐明。概述了抗磁原子的电偶极矩测量的原理。核席夫时段和张光伪传感器耦合常数的上限与原子实验结果和相对论多体理论的结果相结合。讨论了当前实验兴趣的所有二磁原子的基本粒子水平的基本粒子水平,并讨论了其对标准模型之外的物理影响的基本粒子水平。提出了测量结果以及量子色动力学,核和原子计算的当前结果的可能改进。

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