Triplet states in the Be atom: bound state spectrum and hyperfine structure
Abstract
The bound state spectrum of low-lying triplet states in the Be atom is investigated. In particular, we perform accurate computations of various bound triplet S, P, D, F, and G states in the four-electron Be atom. For the 23S(L=0) state in the Be atom we determine the hyperfine structure and a number of bound states properties by using results of highly accurate computations. The energies of the hyperfine structure levels for this state are {\epsilon}(F=12) = -13725.927(7) MHz, {\epsilon}(F=32) = -5490.371(7) MHz and {\epsilon}(F=52) = 8235.556(7) MHz, respectively. The observed hyperfine structure splittings for the the 23S(L=0) state in the 9Be atom must be {\Delta}12 = 8235.556(7) MHz and {\Delta}23 = 13725.927(7) MHz, respectively.
Cite
@article{arxiv.1307.7424,
title = {Triplet states in the Be atom: bound state spectrum and hyperfine structure},
author = {Alexei M. Frolov and Maria Belen Ruiz},
journal= {arXiv preprint arXiv:1307.7424},
year = {2013}
}
Comments
A substantially more complete analysis of this problem can be found in our new publication arXiv:1310.2657 which also includes many other related results for the triplet bound state spectra of the Be-atom. See updated and extended version: ArXiv:1310.2657