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Precision frequency measurement of ~1S_0–~3P_1 intercombination lines of Sr isotopes
引用本文:刘辉,高峰,王叶兵,田晓,任洁,卢本全,徐琴芳,谢玉林,常宏.Precision frequency measurement of ~1S_0–~3P_1 intercombination lines of Sr isotopes[J].中国物理 B,2015,24(1):13201-013201.
作者姓名:刘辉  高峰  王叶兵  田晓  任洁  卢本全  徐琴芳  谢玉林  常宏
作者单位:CAS Key Laboratory of Time and Frequency Primary Standards, National Time Service Center;University of Chinese Academy of Sciences
基金项目:Project supported by the National Natural Science Foundation of China(Grant No.61127901);the Key Project of the Chinese Academy of Sciences(Grant No.KJZD-EW-W02)
摘    要:We report on frequency measurement of the intercombination(5s2)1S0–(5s5p)3P1transition of the four natural isotopes of strontium,including88Sr(82.58%),87Sr(7.0%),86Sr(9.86%),and84Sr(0.56%).A narrow-linewidth laser that is locked to an ultra-low expansion(ULE)optical cavity with a finesse of 12000 is evaluated at a linewidth of 200 Hz with a fractional frequency drift of 2.8×10-13at an integration time of 1 s.The fluorescence collector and detector are specially designed,based on a thermal atomic beam.Using a double-pass acousto-optic modulator(AOM)combined with a fiber and laser power stabilization configuration to detune the laser frequency enables high signal-to-noise ratios and precision saturated spectra to be obtained for the six transition lines,which allows us to determine the transition frequency precisely.The optical frequency is measured using an optical frequency synthesizer referenced to an H maser.Both the statistical values and the final values,including the corrections and uncertainties,are derived for a comparison with the values given in other works.

关 键 词:optical  frequency  measurement  strontium  intercombination  transition
收稿时间:2014-06-19
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