Nataraj H S, Sahoo B K, Das B P, Mukherjee D
Indian Institute of Astrophysics, Bangalore 560 034, India.
Phys Rev Lett. 2008 Jul 18;101(3):033002. doi: 10.1103/PhysRevLett.101.033002. Epub 2008 Jul 16.
The electric dipole moment (EDM) of paramagnetic atoms is sensitive to the intrinsic EDM contribution from that of its constituent electrons and a scalar-pseudoscalar (S-PS) electron-nucleus interaction. The electron EDM and the S-PS contributions to the EDMs of these atoms scale as approximately Z;{3}. Thus, the heavy paramagnetic atoms will exhibit large EDM enhancement factors. However, the sizes of the couplings are so small that they are of interest of high precision atomic experiments. In this work we have computed the EDM enhancement factors of the ground states of Rb and Cs due to both the electron EDM and the S-PS EDM using the relativistic coupled-cluster theory. The importance of determining precise ab initio enhancement factors and experimental results of atomic EDMs in deducing a reliable limit on the electron EDM is emphasized.
顺磁原子的电偶极矩对其组成电子的固有电偶极矩贡献以及标量 - 赝标量(S - PS)电子 - 核相互作用敏感。电子电偶极矩和S - PS对这些原子电偶极矩的贡献近似与Z³成比例。因此,重顺磁原子将表现出大的电偶极矩增强因子。然而,耦合的大小非常小,以至于它们成为高精度原子实验的研究对象。在这项工作中,我们使用相对论耦合簇理论计算了由于电子电偶极矩和S - PS电偶极矩导致的Rb和Cs基态的电偶极矩增强因子。强调了确定精确的从头算增强因子以及原子电偶极矩的实验结果在推导电子电偶极矩可靠极限方面的重要性。