4.7 Article

Zeroth order regular approximation approach to electric dipole moment interactions of the electron

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 147, Issue 1, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.4985567

Keywords

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Funding

  1. State Initiative for the Development of Scientific and Economic Excellence (LOEWE) in the LOEWE-Focus ELCH

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A quasi-relativistic two-component approach for an efficient calculation of P, T-odd interactions caused by a permanent electric dipole moment of the electron (eEDM) is presented. The approach uses a (two-component) complex generalized Hartree-Fock and a complex generalized Kohn-Sham scheme within the zeroth order regular approximation. In applications to select heavy-elemental polar diatomic molecular radicals, which are promising candidates for an eEDM experiment, the method is compared to relativistic four-component electron-correlation calculations and confirms values for the effective electric field acting on the unpaired electron for RaF, BaF, YbF, and HgF. The calculations show that purely relativistic effects, involving only the lower component of the Dirac bi-spinor, are well described by treating only the upper component explicitly. Published by AIP Publishing.

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