English

Study of forbidden atomic transitions on $D_2$ line using Rb nano-cell placed in external magnetic field

Atomic Physics 2015-06-03 v1

Abstract

By experimental exploration of the so-called λ\lambda -Zeeman technique based on Rb nano-cell use we reveal for the first time a strong modification of the probability of the 87^{87}Rb, D2D_2 line Fg=1Fe=0,1,2,3F_g=1 \rightarrow F_e=0, 1, 2, 3 atomic transitions, including forbidden Fg=1,mF=0Fe=1,mF=0F_g=1, m_F =0 \rightarrow F_e=1, m_F =0 and Fg=1,mF=1Fe=3,mF=1F_g=1, m_F =-1 \rightarrow F_e=3, m_F =-1 transitions (these are forbidden transitions when B=0B = 0) in a strong external magnetic field BB in the range of 100 - 1100 G. For π\pi-polarized exciting diode laser radiation (λ=780\lambda = 780 nm) these forbidden transitions at B>150B > 150 G are among the strongest atomic transitions in the detected transmission spectra. Frequency shifts of the individual hyperfine transitions versus magnetic field are also presented: particularly, Fg=1,mF=+1Fe=1,mF=+1F_g=1, m_F =+1 \rightarrow F_e=1, m_F =+1 atomic transition has a unique behavior, since its frequency remains practically unchanged when BB varies from 100 to 1100 G. Developed theoretical model well describes the experiment.

Keywords

Cite

@article{arxiv.1111.5860,
  title  = {Study of forbidden atomic transitions on $D_2$ line using Rb nano-cell placed in external magnetic field},
  author = {G. Hakhumyan and C. Leroy and R. Mirzoyan and Y. Pashayan-Leroy and D. Sarkisyan},
  journal= {arXiv preprint arXiv:1111.5860},
  year   = {2015}
}

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12 pages