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High-purity microwave signal from a dual-frequency semiconductor laser for CPT atomic clocks

机译:来自双频半导体激光器的高纯度微波信号,用于CPT原子钟

摘要

Coherent population trapping (CPT) of metal-alkali atoms is an interesting technique for the development of compact atomic frequency references; it relies on the excitation of the atoms by two phase-coherent laser fields. We describe the design and operation of an innovating dual-frequency laser source dedicated to Cs CPT atomic clocks, based on the direct dual-frequency and dual-polarization operation of an optically-pumped semiconductor laser at 852 nm. The phase noise of beatnote generated by the laser source is at maximum of -90 dBrad²/Hz with active stabilization, and the relative intensity noise (RIN) has been measured at -115 dB/Hz. It would potentially results in a clock frequency stability of 1.6 .10^-12 at 1 second, limited by the laser RIN. With proper adjustments in the laser and clock set-up, we target a stability of 3.10^-13 at 1 second.
机译:金属-碱金属原子的相干粒子俘获(CPT)是开发紧凑原子频率参考的一种有趣技术。它依赖于两个相干激光场对原子的激发。我们基于在852 nm处的光泵浦半导体激光器的直接双频和双极化操作,描述了专用于Cs CPT原子钟的创新双频激光源的设计和操作。由激光源产生的节拍音的相位噪声在具有主动稳定功能的情况下最大为-90dBrad²/ Hz,相对强度噪声(RIN)的测量值为-115 dB / Hz。可能会导致1秒钟的时钟频率稳定性为1.6 .10 ^ -12,这受激光RIN限制。通过适当调整激光器和时钟设置,我们的目标是在1秒内达到3.10 ^ -13的稳定性。

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