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Correlation Trends in the Hyperfine Structures of $^{210,212}$Fr

Atomic Physics 2015-05-20 v1 Nuclear Theory Computational Physics

Abstract

We demonstrate the importance of electron correlation effects in the hyperfine structure constants of many low-lying states in 210^{210}Fr and 212^{212}Fr. This is achieved by calculating the magnetic dipole and electric quadrupole hyperfine structure constants using the Dirac-Fock approximation, second order many-body perturbation theory and the coupled-cluster method in the singles and doubles approximation in the relativistic framework. By combining our recommended theoretical results with the corresponding experimental values, improved nuclear magnetic dipole and electric quadrupole moments of the above isotopes are determined. In the present work, it is observed that there are large discrepancies between the hyperfine structure constants of the 7D5/27D_{5/2} state obtained from the experimental and theoretical studies whereas good agreements are found for the other D5/2D_{5/2} states. Our estimated hyperfine constants for the 8P8P, 6D6D, 10S10S and 11S11S states could be very useful as benchmarks for the measurement of these quantities.

Keywords

Cite

@article{arxiv.1501.04588,
  title  = {Correlation Trends in the Hyperfine Structures of $^{210,212}$Fr},
  author = {B. K. Sahoo and D. K. Nandy and B. P. Das and Y. Sakemi},
  journal= {arXiv preprint arXiv:1501.04588},
  year   = {2015}
}

Comments

10 pages, 8 tables

R2 v1 2026-06-22T08:06:05.381Z