Atomic coherence effects on optically pumped cesium atoms in static magnetic field

  • Kang, Hoonsoo
  • Zhu, Yifu
  • Kim, Young-Gi
  • Oh, Cha-Hwan
  • Park, Young-Ho
  • 외 1명
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초록

The population difference between ground states F = 4 and F = 3 is calculated for Cs atoms pumped on the D, line by a resonant laser beam. The pumping efficiency for Cs atoms in a static magnetic field on two hyperfine transitions (6S(1/2) F = 4 -> 6P(3/2) F ' = 3 and F ' = 4) is calculated for various pump laser intensities. The population difference as a function of the static magnetic field exhibits a dip centered at the zero magnetic field, which corresponds well with the Zeeman coherence between sublevels of the F = 4 state. The full-width at half-maximum (FWHM) of the dip as a function of the pump laser intensity shows abnormal power broadening behavior that differs for different hyperfine transitions. We present experimental results that agree with the theoretical calculations.

키워드

ELECTROMAGNETICALLY INDUCED TRANSPARENCYMULTILEVEL DARK STATESZEEMAN-SUBLEVEL ATOMSRADIATION AMPLIFICATIONPOPULATION-INVERSIONLASERRESONANCESSYSTEMLIGHTTRANSITIONS
제목
Atomic coherence effects on optically pumped cesium atoms in static magnetic field
저자
Kang, HoonsooZhu, YifuKim, Young-GiOh, Cha-HwanPark, Young-HoLee, Ho Seong
DOI
10.1016/j.optcom.2005.11.001
발행일
2006-04
유형
Article
저널명
Optics Communications
260
2
페이지
442 ~ 448