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首页> 外文期刊>Sensors and Actuators, A. Physical >Demonstration of the mass-producible feature of a Cs vapor microcell technology for miniature atomic clocks
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Demonstration of the mass-producible feature of a Cs vapor microcell technology for miniature atomic clocks

机译:用于微型原子钟的CS蒸气微小区技术的批量生产特征的示范

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摘要

We report on the characterization of Cs vapor microcells based on pill dispensers and fabricated in a MEMS foundry according to a process compatible with mass-production. More than three quarters of cells from 6-inch wafers are successfully filled with Cs vapor. Various cells of a given wafer have been characterized using coherent population trapping (CPT) spectroscopy, demonstrating similar buffer gas (Ne) pressure with a standard deviation of about 2.5% and CPT resonances with similar linewidth and contrast properties. In addition, frequency drifts mainly attributed to cell inner atmosphere variations have been investigated onto several cells over 250-500 h measurements. The corresponding contribution at 1 day averaging time to a clock fractional frequency stability is estimated to be about 10(-11) or lower. In a last section, the fractional frequency stability of a clock prototype using one fabricated Cs-Ne microcell is measured to be 2.5 x 10(-11) tau(-1/2) up to 200 s averaging time and better than 2 x 10(-11) at 10(5) s. The clock frequency stability is mainly limited at short-term by the frequency-to-amplitude (FM-AM) noise conversion process and the laser amplitude (AM) noise. The mid-term stability is mainly affected by temperature-induced light shift effects. These performances tend to demonstrate that this vapor cell technology, compatible with mass-production, is suitable for miniature quantum clocks or sensors. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们报告了基于丸剂分配器的CS蒸气微胶体的表征,并根据与大规模生产相容的方法在MEMS铸造中制造。来自6英寸晶片的四分之三的细胞成功地填充了CS蒸气。使用相干群体捕获(CPT)光谱表征给定晶片的各种细胞,其展示类似的缓冲气体(NE)压力,标准偏差为约2.5%,并具有类似的线宽和对比度的CPT共振。此外,已经研究了主要归因于细胞内大气变化的频率漂移,以上超过250-500小时测量。在1天的平均时间到时钟分数频率稳定性的相应贡献估计为约10(-11)或更低。在最后一节中,使用一个制造的CS-NE微小区的时钟原型的分数频率稳定性测量为2.5×10(-11)TAU(-1/2),最高平均时间为200秒,优于2×10 (-11)在10(5)秒。时钟频率稳定性主要由频率到幅度(FM-AM)噪声转换过程和激光幅度(AM)噪声限制。中期稳定性主要受温度诱导的光移效应的影响。这些性能倾向于证明这种蒸汽电池技术与大规模生产兼容,适用于微型量子钟或传感器。 (c)2018年elestvier b.v.保留所有权利。

著录项

  • 来源
    《Sensors and Actuators, A. Physical 》 |2018年第2018期| 共8页
  • 作者单位

    FEMTO ST CNRS UBFC ENSMM 26 Rue Epitaphe F-25030 Besancon France;

    FEMTO ST CNRS UBFC ENSMM 26 Rue Epitaphe F-25030 Besancon France;

    FEMTO ST CNRS UBFC ENSMM 26 Rue Epitaphe F-25030 Besancon France;

    FEMTO ST CNRS UBFC ENSMM 26 Rue Epitaphe F-25030 Besancon France;

    FEMTO ST CNRS UBFC ENSMM 26 Rue Epitaphe F-25030 Besancon France;

    FEMTO ST CNRS UBFC ENSMM 26 Rue Epitaphe F-25030 Besancon France;

    Tron Microsyst 98 Rue Pre LHorme F-38926 Crolles France;

    Tron Microsyst 98 Rue Pre LHorme F-38926 Crolles France;

    Tron Microsyst 98 Rue Pre LHorme F-38926 Crolles France;

    FEMTO ST CNRS UBFC ENSMM 26 Rue Epitaphe F-25030 Besancon France;

    FEMTO ST CNRS UBFC ENSMM 26 Rue Epitaphe F-25030 Besancon France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TP212.1;
  • 关键词

    Atomic physics; Coherent population trapping; Alkaline vapor cells;

    机译:原子理物理;相干群体捕获;碱性蒸气细胞;

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