An extrapolation method for polarizability assessments of ion-based optical clocks

K. J. Arnold, M. D. Barrett
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Abstract

We present a numerical method for extrapolating polarizability measurements to dc as done in the assessment of blackbody radiation shifts for ion-based clocks. The method explicitly accounts for the frequency dependence of relevant atomic transitions without introducing an ad hoc modelling function. It incorporates \emph{a priori} atomic structure calculations, which allows measurements to be augmented by calculations if there is insufficient data to make a purely measurement based estimate. The method also provides indicators of inconsistencies between theory and experiment or inadequacies of the data for making an extrapolation. We use results from Al$^+$, Lu$^+$, and Yb$^+$ to illustrate features of the method.
离子光学钟偏振性评估的外推法
我们提出了一种将极化率测量结果外推到直流的数值方法,就像在评估基于离子时钟的黑体辐射偏移时所做的那样。该方法明确考虑了相关原子跃迁的频率依赖性,而无需引入特别的建模函数。它结合了先验的原子结构计算,如果没有足够的数据进行纯粹的测量估算,可以通过计算来补充测量结果。该方法还提供了理论与实验不一致或数据不足的指标,以便进行外推。我们使用 Al$^+$、Lu$^+$ 和 Yb$^+$ 的结果来说明该方法的特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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