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Frequency stability of atomic clocks based on coherent population trapping resonance in Rb-85

机译:基于Rb-85中相干粒子陷阱共振的原子钟频率稳定性

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An atomic clock system based on coherent population trapping (CPT) resonance in Rb-85 is reported, while most past works about the CPT clock are in Rb-87. A new modulation method (full-hyperfine-frequency-splitting modulation) is presented to reduce the effect of light shift to improve the frequency stability of the CPT clock in Rb-85. The experimental results show that the short-term frequency stability of the CPT clock in Rb-85 is in the order of 10(-10)/s and the long-term frequency stability can achieve 1.5 X 10(-11)/80000s, which performs as well as Rb-87 in CPT resonance. This very good frequency stability performance associated with the low-cost and low-power properties of Rb-85 indicates that an atomic clock based on CPT in Rb-85 should be a promising candidate for making the chip scale atomic clock.
机译:据报道,在Rb-85中基于相干人口陷阱(CPT)共振的原子钟系统,而过去有关CPT时钟的大多数工作都在Rb-87中。提出了一种新的调制方法(全超细频分频调制),以减少光频移的影响,从而提高Rb-85中CPT时钟的频率稳定性。实验结果表明,Cb时钟在Rb-85中的短期频率稳定性约为10(-10)/ s,长期频率稳定性可以达到1.5 X 10(-11)/ 80000s,在CPT共振中的表现与Rb-87一样好。与Rb-85的低成本和低功耗特性相关的非常好的频率稳定性能表明,Rb-85中基于CPT的原子钟应该是制造芯片级原子钟的有希望的候选者。

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