中国物理B ›› 2021, Vol. 30 ›› Issue (8): 83203-083203.doi: 10.1088/1674-1056/ac0528
Xiaoyan Liu(刘晓艳)1,2, Xu Zhao(赵旭)1,3, Jianfang Sun(孙剑芳)1,2, Zhen Xu(徐震)1,2,†, and Zhengfeng Hu(胡正峰)1,2,3,4,‡
Xiaoyan Liu(刘晓艳)1,2, Xu Zhao(赵旭)1,3, Jianfang Sun(孙剑芳)1,2, Zhen Xu(徐震)1,2,†, and Zhengfeng Hu(胡正峰)1,2,3,4,‡
摘要: Light shift is important and inevitably affects the long-term stability of an atomic clock. In this work, considering two unbalanced branches of the spontaneous decay rate in a three-level system, we studied the frequency shifts of electromagnetically induced transparency (EIT) and coherent population trapping (CPT) clocks operating under the pulse sequence regime by numerically solving the Liouville density matrix equations. The results show that the frequency shifts are larger when the two branches of spontaneous emission rate are not equal compared to the equal case. In addition, in EIT-Ramsey, the effect of the unbalanced branches of the spontaneous decay rate and relaxations of low-energy states on the frequency shift is greater than that of Rabi frequency. In CPT-Ramsey, the relaxations of low-energy states play a dominant role in frequency shift.
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