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探索 Ramsey-CPT 光谱学在微腔原子钟中的应用。

Exploring the Use of Ramsey-CPT Spectroscopy for a Microcell-Based Atomic Clock.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Oct;68(10):3249-3256. doi: 10.1109/TUFFC.2021.3085249. Epub 2021 Sep 27.

Abstract

We investigate the application of Ramsey spectroscopy for the development of a microcell atomic clock based on coherent population trapping (CPT). The dependence of the central Ramsey-CPT fringe properties on key experimental parameters is first studied for optimization of the clock's short-term frequency stability. The sensitivity of the clock frequency to light-shift effects is then studied. In comparison with the continuous-wave (CW) regime case, the sensitivity of the clock frequency to laser power variations is reduced by a factor up to 14 and 40.3 for dark times of 150 and [Formula: see text], respectively, at the expense of intensity 3.75 times higher for short-term stability optimization. The dependence of the clock frequency on the microwave power is also reduced in the Ramsey case. We demonstrate that the Ramsey-CPT interrogation improves the clock Allan deviation for averaging times higher than 100 s. With a dark time of [Formula: see text], a clock fractional frequency stability of 3.8 ×10 at 10 s is obtained, in comparison with the level of 8×10 obtained in the standard CW case, in similar environmental conditions. These results demonstrate that Ramsey-based interrogation protocols might be an attractive approach for the development of chip-scale atomic clocks (CSACs) with enhanced mid- and long-term stability.

摘要

我们研究了 Ramsey 光谱学在基于相干布居囚禁(CPT)的微腔原子钟发展中的应用。首先研究了中央 Ramsey-CPT 条纹特性对关键实验参数的依赖关系,以优化时钟的短期频率稳定性。然后研究了时钟频率对光移效应的灵敏度。与连续波(CW)模式相比,时钟频率对激光功率变化的灵敏度分别降低了 14 倍和 40.3 倍,代价是短期稳定性优化所需的强度增加了 3.75 倍。Ramsey 情况下时钟频率对微波功率的依赖关系也降低了。我们证明了 Ramsey-CPT 询问可以提高平均时间超过 100s 的时钟 Allan 偏差。在暗时间为[Formula: see text]的情况下,与标准 CW 情况下获得的 8×10 相比,在类似的环境条件下,我们获得了 3.8×10 的时钟分数频率稳定性。这些结果表明,基于 Ramsey 的询问协议可能是开发具有增强的中长期稳定性的片上原子钟(CSAC)的一种有吸引力的方法。

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