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Light-shift suppression in laser optically pumped vapour-cell atomic frequency standards

机译:激光光学泵浦的蒸气室原子频率标准中的光移抑制

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We present a novel scheme for reducing the AC Stark effect in optical-microwave double-resonance spec-troscopy and its application for efficient suppression of the light-shift-related instabilities in laser-pumped gas-cell atomic clocks. The method uses a multi-frequency pump light field that can be easily produced by frequency modulation of the single-frequency pump laser. We show theoretically that variations of the light shift with both laser frequency and light intensity can be strongly suppressed with properly chosen pump light spectra. Suitable modulation parameters can be found for both the case of pure frequency modulation as well as for pump light spectra showing amplitude-modulation contributions, as usually found for current modulation of diode lasers. We experimentally demonstrate the method for a Rb atomic clock using a frequency-modulated distributed Bragg-reflector laser diode as pump light source.
机译:我们提出了一种新颖的方案,用于减少光学微波双共振光谱学中的AC Stark效应及其在有效抑制激光泵浦气室原子钟中与光位移相关的不稳定性的应用。该方法使用可以通过单频泵浦激光器的调频容易产生的多频泵浦光场。我们从理论上证明,通过适当选择泵浦光谱,可以大大抑制光偏移随激光频率和光强度的变化。对于纯频率调制的情况以及显示幅度调制贡献的泵浦光谱,都可以找到合适的调制参数,这通常是在二极管激光器的电流调制中发现的。我们通过实验证明了使用调频分布式布拉格反射激光二极管作为泵浦光源的Rb原子钟的方法。

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