English

Spectroscopy of $^{87}\text{Sr}$ triplet Rydberg states

Atomic Physics 2018-10-17 v1

Abstract

A combined experimental and theoretical spectroscopic study of high-nn, 30n100{30 \lesssim n \lesssim 100}, triplet S\text{S} and D\text{D} Rydberg states in 87Sr^{87}\text{Sr} is presented. 87Sr^{87}\text{Sr} has a large nuclear spin, I=9/2{I=9/2}, and at high-nn the hyperfine interaction becomes comparable to, or even larger than, the fine structure and singlet-triplet splittings which poses a considerable challenge both for precision spectroscopy and for theory. For high-nn S\text{S} states, the hyperfine shifts are evaluated non-perturbatively taking advantage of earlier spectroscopic data for the I=0{I=0} isotope 88Sr^{88}\text{Sr}, which results in good agreement with the present measurements. For the D\text{D} states, this procedure is reversed by first extracting from the present 87Sr^{87}\text{Sr} measurements the energies of the 3D1,2,3^{3}\text{D}_{1,2,3} states to be expected for isotopes without hyperfine structure (88Sr^{88}\text{Sr}) which allows the determination of corrected quantum defects in the high-nn limit.

Keywords

Cite

@article{arxiv.1808.05987,
  title  = {Spectroscopy of $^{87}\text{Sr}$ triplet Rydberg states},
  author = {R. Ding and J. D. Whalen and S. K. Kanungo and T. C. Killian and F. B. Dunning and S. Yoshida and J. Burgdörfer},
  journal= {arXiv preprint arXiv:1808.05987},
  year   = {2018}
}

Comments

13 pages, 8 figures