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A high-performance Raman-Ramsey Cs vapor cell atomic clock

机译:高性能拉曼-Ramsey CS蒸气细胞原子时钟

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摘要

We demonstrate a high-performance coherent-population-trapping (CPT) Cs vapor cell atomic clock using the push-pull optical pumping technique in the pulsed regime, allowing the detection of high-contrast and narrow Ramsey-CPT fringes. The impact of several experimental parameters onto the clock resonance and short-term fractional frequency stability, including the laser power, the cell temperature, and the Ramsey sequence parameters, has been investigated. We observe and explain the existence of a slight dependence on laser power of the central Ramsey-CPT fringe line-width in the pulsed regime. We report also that the central fringe line-width is commonly narrower than the expected Ramsey line-width given by 1 /(2T_R), with T_R the free-evolution time, for short values of T_R. The clock demonstrates a short-term fractional frequency stability at the level of 2.3 × 10~(-13) τ~-(1/2) up to 100 s averaging time, mainly limited by the laser amplitude modulation noise. Comparable performances are obtained in the conventional continuous wave regime, with the use of an additional laser power stabilization setup. The pulsed interaction allows to reduce significantly the clock frequency sensitivity to laser power variations, especially for high values of T_R. This pulsed CPT clock, ranking among the best microwave vapor cell atomic frequency standards, could find applications in telecommunication, instrumentation, defense or satellite-based navigation systems.
机译:我们展示了一种高性能相干群体捕获(CPT)CS蒸汽电池原子时钟,使用脉冲制度中的推拉光学泵送技术,允许检测高对比度和窄的Ramsey-CPT条纹。已经研究了几种实验参数对时钟谐振和短期分数频率稳定性的影响,包括激光功率,电池温度和拉姆齐序列参数。我们观察并解释存在对脉冲制度中的中央拉丝 - CPT条纹线宽度的激光功率略微依赖性的存在。我们还报告中央边缘线宽度通常窄于1 /(2T_R)给出的预期拉丝线宽,其自由演化时间为T_R的短值。该时钟在2.3×10〜(-13)τ〜 - (1/2)的平均时间的级别下的短期分数频率稳定性,主要受激光幅度调制噪声的限制。在传统的连续波端中获得可比较的性能,利用附加的激光功率稳定设置。脉冲相互作用允许显着降低对激光功率变化的时钟频率敏感性,尤其是对于T_R的高值。这种脉冲CPT时钟,排名在最佳的微波蒸气细胞原子频率标准中,可以在电信,仪器,防御或卫星导航系统中找到应用。

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  • 来源
    《Journal of Applied Physics》 |2017年第10期|104903.1-104903.10|共10页
  • 作者单位

    FEMTO-ST CNRS UBFC 26 chemin de I'Epitaphe 25030 Besançon Cedex France;

    FEMTO-ST CNRS UBFC 26 chemin de I'Epitaphe 25030 Besançon Cedex France;

    LNE~SYRTE Observatoire de Paris PSL Research University CNRS Sorbonne Universites UPMC Univ. Paris 06 61 avenue de l'Observatoire 75014 Paris France;

    LNE~SYRTE Observatoire de Paris PSL Research University CNRS Sorbonne Universites UPMC Univ. Paris 06 61 avenue de l'Observatoire 75014 Paris France;

    LNE~SYRTE Observatoire de Paris PSL Research University CNRS Sorbonne Universites UPMC Univ. Paris 06 61 avenue de l'Observatoire 75014 Paris France;

    FEMTO-ST CNRS UBFC 26 chemin de I'Epitaphe 25030 Besançon Cedex France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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