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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Dick effect in a pulsed atomic clock using coherent population trapping
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Dick effect in a pulsed atomic clock using coherent population trapping

机译:使用相干人口陷阱的脉冲原子钟中的迪克效应

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The Dick effect can be a limitation of the achievable frequency stability of a passive atomic frequency standard when the ancillary frequency source is only periodically sampled. Here, we analyze the Dick effect for a pulsed vapor cell clock using coherent population trapping (CPT). Because of its specific interrogation process without atomic preparation nor detection outside of the Ramsey pulses, it exhibits an original shape of the sensitivity function to phase noise of the oscillator. Numerical calculations using a three-level atom model are successfully compared with measurements; an approximate formula of the sensitivity function is given as an easy-to-use tool. A comparison of our CPT clock sensitivity to phase noise with a clock of the same duty cycle using a twolevel system reveals a higher sensitivity in the CPT case. The influence of a free-evolution time variation and of a detection duration lengthening on this sensitivity is studied. Finally, this study permitted the choice of an adapted quartz oscillator and allowed an improvement of the clock fractional frequency stability at the level of 3.2 x 10-13 at 1 s.
机译:当仅定期采样辅助频率源时,迪克效应可能成为无源原子频率标准可实现的频率稳定性的限制。在这里,我们使用相干人口陷阱(CPT)分析脉冲蒸汽电池时钟的Dick效应。由于其特殊的询问过程,无需进行原子准备,也无需在Ramsey脉冲之外进行检测,因此它表现出对振荡器相位噪声的敏感函数的原始形状。使用三级原子模型的数值计算已成功地与测量结果进行了比较;灵敏度函数的近似公式作为易于使用的工具给出。使用两级系统将我们的CPT时钟灵敏度与具有相同占空比的时钟的相位噪声进行比较,发现在CPT情况下具有更高的灵敏度。研究了自由进化时间变化和检测持续时间延长对该灵敏度的影响。最后,这项研究允许选择合适的石英振荡器,并在1 s时将时钟分数频率稳定性提高到3.2 x 10 -13 的水平。

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