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Communication: Theoretical study of HfF+ cation to search for the T,P-odd interactions

机译:通信:HFF +阳离子搜寻T,P奇际相互作用的理论研究

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The combined all-electron and two-step approach is applied to calculate the molecular parameters which are required to interpret the ongoing experiment to search for the effects of manifestation of the T, P-odd fundamental interactions in the HfF+ cation by Loh et al. [Science 342, 1220 (2013)] and Ni et al. [J. Mol. Spectrosc. 300, 12 (2014)]. The effective electric field that is required to interpret the experiment in terms of the electron electric dipole moment is found to be 22.5 GV/cm. In the work of Pospelov and Ritz [Phys. Rev. D 89, 056006 (2014)], it was shown that another source of the T, P-odd interaction, the scalar-pseudoscalar nucleus-electron interaction with the dimensionless strength constant k(T,P) can dominate over the direct contribution from the electron electric dipole moment within the standard model and some of its extensions. Therefore, for the comprehensive and correct interpretation of the HfF+ experiment, one should also know the molecular parameter W-T,W-P, the value of which is reported here to be 20.1 kHz. Published by AIP Publishing.
机译:施加了组合的全电子和两步方法以计算解释持续实验所需的分子参数,以搜索LOH等人的HFF +阳离子中T,P奇形基本相互作用的效果。 [科学342,1220(2013)]和Ni等人。 [J.摩尔。光谱。 300,12(2014)]。在电子电偶极力矩方面需要解释实验所需的有效电场是22.5GV / cm。在Pospelov和Ritz [Phys。目前,表明,图89,056006(2014)]显示了与无量纲强度常数k(t,p)的标量-psidoscalar核 - 电子相互作用的另一个来源,可以在直接上占主导地位标准型号内电子电偶极力矩和其一些延伸部分的贡献。因此,对于HFF +实验的全面和正确的解释,人们还应该知道分子参数W-T,W-P,其值在此报告为20.1kHz。通过AIP发布发布。

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