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Computational studies of light shift in a Raman-Ramsey interference-based atomic clock

机译:基于Raman-Ramsey干涉的原子钟中光移的计算研究

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摘要

Determining light shift in Raman-Ramsey (RR) interference is important for the development of atomic frequency standards based on a vapor cell. We have accurately calculated light shift in RR interference using the density-matrix equations for a three-level system without invoking the adiabatic approximation. Specifically, phase shifts associated with coherent density-matrix terms are studied as they are relevant to the detection of RR interference in transmission (or absorption) through the medium. For the single-velocity case, the numerically computed results are compared with the analytical results obtained using the adiabatic approximation. The result shows light shift suppression in conformity with the closed-form analytic solutions. The computational studies have also been extended to investigate RR interference for a Doppler-broadened vapor medium. Importantly, a velocity-induced frequency shift is found at the fringe center as an additional source of frequency error for a vapor cell Raman clock. (C) 2015 Optical Society of America
机译:确定拉曼-拉姆西(RR)干涉中的光移对于开发基于蒸汽电池的原子频率标准非常重要。我们使用三矩阵系统的密度矩阵方程式精确计算了RR干扰中的光移,而无需调用绝热近似。具体而言,研究与相干密度矩阵项相关的相移,因为它们与检测通过介质的传输(或吸收)中的RR干扰有关。对于单速情况,将数值计算结果与使用绝热近似法获得的分析结果进行比较。结果显示出与闭合形式的解析解一致的光移抑制。计算研究也已扩展到研究多普勒增宽蒸气介质的RR干扰。重要的是,在边缘中心发现了速度引起的频移,作为蒸气室拉曼时钟的另一个频率误差源。 (C)2015年美国眼镜学会

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