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Low-Noise Dual-Frequency Laser for Compact Cs Atomic Clocks

机译:用于紧凑型Cs原子钟的低噪声双频激光器

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摘要

We report the dual-frequency and dual-polarization emission of an optically-pumped vertical external-cavity semiconductor laser. Our laser source provides a high-purity optically-carried RF signal tunable in the GHz range, and is specifically designed for the coherent population trapping (CPT) of Cs atoms in compact atomic clocks. The laser spectrum is stabilized onto a Cs atomic transition at 852.1 nm, and the frequency difference is locked to a local oscillator at 9.2 GHz. Special attention has been paid to the evaluation of the frequency, intensity and phase noise properties. A maximum phase noise of $-{hbox {90}} ;{hbox {dBrad}^2}$ /Hz has been measured. Finally, we estimate the contribution of the laser noise on the short-term frequency stability of a CPT atomic clock, and predict that a value below $hbox {3} times hbox {10}^{-13}$ over one second is a realistic target.
机译:我们报告了光泵浦垂直外腔半导体激光器的双频和双极化发射。我们的激光源可提供可在GHz范围内调谐的高纯度光学传输RF信号,并且是专为紧凑型原子钟中Cs原子的相干阱捕获(CPT)设计的。激光光谱稳定在852.1 nm的Cs原子跃迁上,并且频率差被锁定在9.2 GHz的本地振荡器上。已经特别注意了频率,强度和相位噪声特性的评估。已测量最大相位噪声 $-{hbox {90}}; {hbox {dBrad} ^ 2} $ / Hz 。最后,我们估计激光噪声对CPT原子钟的短期频率稳定性的影响,并预测值小于<内联公式> $ hbox {3}乘以hbox {10} ^一秒钟内{-13} $ 是一个现实的目标。

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