English

Atomic transitions of Rb, $D_{2}$ line in strong magnetic fields: hyperfine Paschen-Back regime

Atomic Physics 2015-06-19 v1

Abstract

An efficient λ/2\lambda/2-method (λ\lambda is the resonant wavelength of laser radiation) based on nanometric-thickness cell filled with rubidium is implemented to study the splitting of hyperfine transitions of 85^{85}Rb and 87^{87}Rb D2D_2 lines in an external magnetic field in the range of B=3B =3~kG -- 7~kG. It is experimentally demonstrated that at B>3B > 3~kG from 38 (22) Zeeman transitions allowed at low BB-field in 85^{85}Rb (87^{87}Rb) spectra in the case of σ+\sigma^+ polarized laser radiation there remain only 12 (8) which is caused by decoupling of the total electronic momentum J\textbf{J} and the nuclear spin momentum I\textbf{I} (hyperfine Paschen-Back regime). Note that at B>4.5B > 4.5~kG in the absorption spectrum these 2020 atomic transitions are regrouped in two completely separate groups of 1010 atomic transitions each. Their frequency positions and fixed (within each group) frequency slopes, as well as the probability characteristics are determined. A unique behavior of the atomic transitions of 85^{85}Rb and 87^{87}Rb labeled 1919 and 2020 (for low magnetic field they could be presented as transitions Fg=3,mF=+3Fe=4,mF=+4F_g=3, m_F=+3 \rightarrow F_e=4, m_F=+4 and Fg=2,mF=+2Fe=3,mF=+3F_g=2, m_F=+2 \rightarrow F_e=3, m_F=+3, correspondingly) is stressed. The experiment agrees well with the theory. Comparison of the behavior of atomic transitions for D2D_2 line compared with that of D1D_1 line is presented. Possible applications are described.

Keywords

Cite

@article{arxiv.1405.7655,
  title  = {Atomic transitions of Rb, $D_{2}$ line in strong magnetic fields: hyperfine Paschen-Back regime},
  author = {A. Sargsyan and A. Tonoyan and G. Hakhumyan and C. Leroy and Y. Pashayan-Leroy and D. Sarkisyan},
  journal= {arXiv preprint arXiv:1405.7655},
  year   = {2015}
}

Comments

13 pages, 6 figures