铷
原子钟
物理
理论(学习稳定性)
频率梳
微波食品加热
光纤
噪音(视频)
频率漂移
光学
散粒噪声
相位噪声
原子物理学
激光器
光学频率梳
原子光学
光电子学
光纤激光器
艾伦方差
斯塔克效应
计算物理学
纤维
半导体激光器理论
材料科学
频率调制
激光冷却
光抽运
保偏光纤
作者
Chen Feng,X.H. Luo,Ji’an Duan,Hangzhe Lyu,Lin-Yan Yu,X. B. Qi,Qi-Fan Yang,Yanhui Wang
摘要
In this work, we stabilize a 1556.2 nm fiber laser to the 5S1/2 → 5D5/2 two-photon transition in 87Rb in a carefully designed compact physics package. A commercial fiber frequency comb divides the optical frequency into 200 MHz microwave output, which demonstrates a fractional frequency stability of 2.2 × 10-13 at τ = 1 s and 8.1 × 10-15 at τ = 4000 s, without linear drift removal. We analyze the systematic effect on the short-term and long-term stabilities in detail. The short-term and long-term stabilities are limited by shot noise and ac Stark shift, respectively. The rubidium two-photon optical clock is a promising candidate for the next-generation space-borne atomic clock.
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