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Effect of trapped-ion heating on generalised Ramsey methods for suppressing frequency shifts caused by a probe field in atomic clocks

机译:捕获离子加热对抑制原子钟探针场引起的脉冲偏移的广义Ramsey方法的影响

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摘要

Based on a simple one-dimensional model, we consider the effect of trapped-ion heating on the efficiency of generalised Ramsey methods for the probe-induced frequency shift suppression in optical frequency standards based on single ultracold ions. It is shown that ion heating reduces the efficiency of all previously proposed one-loop generalised Ramsey methods, leading in all cases to the appearance of a linear dependence of the reference frequency shift on the residual field frequency shift. Two versions of the most heating stable generalised Ramsey schemes, for which the proportionality coefficient in this dependence is minimal, are demonstrated.
机译:基于简单的一维模型,我们考虑捕获离子加热对基于单超大离子的光学频率标准探测频移抑制的广义Ramsey方法效率的影响。 结果表明,离子加热降低了所有先前提出的单环广义Ramsey方法的效率,在所有情况下引进到基准频移对残余场频移的线性依赖性的外观。 证明了这两个版本的最加热稳定的广义Ramsey方案,其依赖性的比例系数是最小的。

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