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An all-sapphire Cs gas cell for a chip-scale atomic clock

机译:全蓝宝石Cs气室,用于芯片级原子钟

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We realized a Cs gas cell for a chip-scale atomic clock fabricated from single-crystal sapphire chips, which have extremely-low gas penetration coefficients. The coherent population trapping (CPT) resonance spectrum was evaluated to validate the developed sapphire Cs gas cell. A CPT resonance with a contrast of 1.5%, a frequency shift (from the Cs hyperfine transition frequency) of 55.9 kHz, and a full width at half maximum of 2.2 kHz was obtained at an incident light intensity of 40 mu LW cm(-2). The frequency shift was mainly caused by the collision between Ne sealed in the gas cell and Cs atoms. From the experimental results, the pressure of Ne was estimated to be 10.7 kPa. (C) 2019 The Japan Society of Applied Physics
机译:我们实现了一个由单晶蓝宝石芯片制成的,用于芯片级原子钟的Cs气室,其气体渗透系数极低。评估了相干人口陷阱(CPT)共振光谱,以验证开发的蓝宝石Cs气室。在40μLW cm(-2)的入射光强度下,获得了对比度为1.5%,频移(相对于Cs超精细跃迁频率)为55.9 kHz,半峰全宽为2.2 kHz的CPT共振)。频移主要是由密封在气室中的Ne与Cs原子之间的碰撞引起的。根据实验结果,Ne的压力估计为10.7kPa。 (C)2019日本应用物理学会

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