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Improvement of the short-term stability of atomic fountain clock with state preparation by two-laser optical pumping

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摘要 To improve the signal to noise ratio(SNR)and the short-term stability of cesium atomic fountain clocks,the work of two-laser optical pumping is presented theoretically and experimentally.The short-term stability of the NIM6 fountain clock has been improved by preparing more cold atoms in the|F=4,m_(F)=0>clock state with a shortened cycle time.Two π-polarized laser beams overlapped in the horizontal plane have been applied after launching,one is resonant with|F=4>→|F′=4>transition and the other is resonant with|F=3>→|F′=4>transition.With optical pumping,the population accumulated in the|m_(F)=0>clock state is improved from 11%to 63%,and the detection signal is increased by a factor of 4.2,the SNR of the clock transition probability and the short-term stability are also improved accordingly.
作者 韩蕾 房芳 陈伟亮 刘昆 戴少阳 左娅妮 李天初 Lei Han;Fang Fang;Wei-Liang Chen;Kun Liu;Shao-Yang Dai;Ya-Ni Zuo;and Tian-Chu Li(School of Optics and Photonics,Beijing Institute of Technology,Beijing 100081,China;Key Laboratory of Time and Frequency Standards,National Institute of Metrology(NIM),Beijing 100029,China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第5期272-276,共5页 中国物理B(英文版)
基金 the National Natural Science Foundation of China(Grant No.11873044).
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