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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Mitigation of Temperature-Induced Light-Shift Effects in Miniaturized Atomic Clocks
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Mitigation of Temperature-Induced Light-Shift Effects in Miniaturized Atomic Clocks

机译:减轻原子钟中温度引起的光偏移效应

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摘要

The demonstration of miniature atomic clocks (MACs) based on coherent population trapping (CPT) with improved mid- and long-term frequency stability benefits from the implementation of additional stabilization loops to reduce temperature-induced light-shift effects. In this article, we report and highlight the individual and combined benefits of such servo loops on the frequency stability of a CPT-based MAC. The first loop stabilizes the actual temperature of the vertical-cavity surface-emitting laser (VCSEL) chip using a compensation method in which the reading of external temperature variations is derived from the atomic vapor output signal. The second loop maintains the total microwave power absorbed by the laser to a value that maximizes the optical absorption and significantly reduces the laser power dependence of the clock frequency. Experimental tests are performed onto a miniaturized CPT-clock physics package using a chip-VCSEL tuned on the Cs D-1 line (lambda = 895 nm). The VCSEL temperature compensation technique improves, by a factor of 4, the Allan deviation of the clock at 10(4) s. The simultaneous operation of both servo loops improves, by a factor of 7, the clock fractional frequency stability at 10(4) s. The clock demonstrates a fractional frequency stability of 7.5 x 10(-11) at 1 s and better than 2 x 10(-11) at 1 day.
机译:基于相干人口陷阱(CPT)的微型原子钟(MAC)的演示具有改善的中长期频率稳定性,这得益于实施附加的稳定环路以减少温度引起的光移效应。在本文中,我们报告并重点介绍了这种伺服环路在基于CPT的MAC的频率稳定性方面的单独优势和综合优势。第一回路使用补偿方法来稳定垂直腔表面发射激光器(VCSEL)芯片的实际温度,在该方法中,从原子蒸气输出信号得出外部温度变化的读数。第二回路将激光器吸收的总微波功率保持在最大程度提高光吸收并显着降低时钟频率对激光器功率的依赖性的值。使用在Cs D-1线上调谐的芯片VCSEL(lambda = 895 nm),在微型CPT时钟物理封装上进行了实验测试。 VCSEL温度补偿技术将时钟在10(4)s的Allan偏差提高了4倍。两个伺服环路的同时运行将时钟分数频率稳定度提高了7倍,达到10(4)s。该时钟在1 s时的分数频率稳定性为7.5 x 10(-11),在1天时优于2 x 10(-11)。

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