Verification of g-factors for lead monofluoride ground state, PbF
arXiv:1505.00137 · doi:10.1103/PhysRevA.92.032508
Abstract
We report the results of our theoretical study and analysis of earlier experimental data for the g-factor tensor components of the ground state of free PbF radical. The values obtained both within the relativistic coupled-cluster method combined with the generalized relativistic effective core potential approach and with our fit of the experimental data from [R.J. Mawhorter, B.S. Murphy, A.L. Baum, T.J. Sears, T. Yang, P.M. Rupasinghe, C.P. McRaven, N.E. Shafer-Ray, L.D. Alphei, J.-U. Grabow, Phys. Rev. A 84, 022508 (2011); A. Baum, B.S. thesis, Pomona College, 2011]. The obtained results agree very well with each other but contradict the previous fit performed in the cited works. Our final prediction for g-factors is , .
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- Search for parity and time reversal violating effects in HgH: Relativistic coupled-cluster study
- Many body study of -factor in boron-like argon
- Electron-nucleus scalar-pseudoscalar interaction in PbF: Z-vector study in the relativistic coupled-cluster framework
- Electric-field-dependent factor for the ground state of lead monofluoride, PbF
- HfF as a candidate to search for the nuclear weak quadruple moment
- A survey of nuclear quadrupole deformation in order to estimate the nuclear MQM and its relative contribution to the atomic EDM