English

Hyperfine quenching of the metastable $^3P_{0,2}$ states in divalent atoms

Atomic Physics 2009-11-10 v1

Abstract

Hyperfine quenching rates of the lowest-energy metastable 3P0^3P_0 and 3P2^3P_2 states of Mg, Ca, Sr, and Yb atoms are computed. The calculations are carried out using ab initio relativistic many-body methods. The computed lifetimes may be useful for designing novel ultra-precise optical clocks and trapping experiments with the 3P23P_2 fermionic isotopes. The resulting natural widths of the 3P0>1S0^3P_0 -> ^1S_0 clock transition are 0.44 mHz for 25^{25}Mg, 2.2 mHz for 43^{43}Ca, 7.6 mHz for 87^{87}Sr, 43.5 mHz for 171^{171}Yb, and 38.5 mHz for 173^{173}Yb. Compared to the bosonic isotopes, the lifetime of the 3P23P_2 states in fermionic isotopes is noticeably shortened by the hyperfine quenching but still remains long enough for trapping experiments.

Keywords

Cite

@article{arxiv.physics/0312006,
  title  = {Hyperfine quenching of the metastable $^3P_{0,2}$ states in divalent atoms},
  author = {Sergey Porsev and Andrei Derevianko},
  journal= {arXiv preprint arXiv:physics/0312006},
  year   = {2009}
}

Comments

10 pages, 1 figure, submitted to Phys. Rev. A