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High-Accuracy Calculation of the Blackbody Radiation Shift in the ~(133)Cs Primary Frequency Standard

机译:〜(133)Cs初频标准中黑体辐射位移的高精度计算

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摘要

The blackbody radiation (BBR) shift is an important systematic correction for the atomic frequency standards realizing the SI unit of time. Presently, there is controversy over the value of the BBR shift for the primary ~(133)Cs standard. At room temperatures, the values from various groups differ at the 3 X 10~(-15) level, while modern clocks are aiming at 10~(-16) accuracies. We carry out high-precision relativistic many-body calculations of the BBR shift. For the BBR coefficient β at T = 300 K, we obtain β = -(1.710 ± 0.006) X 10~(-14), implying 6 X 10~(-17) fractional uncertainty. While in accord with the most accurate measurement, our 0.35% accurate value is in a substantial (10%) disagreement with recent semiempirical calculations. We identify an oversight in those calculations.
机译:黑体辐射(BBR)偏移是对实现SI时间单位的原子频率标准的重要系统校正。目前,对于主要〜(133)Cs标准的BBR位移值存在争议。在室温下,各组的值在3 X 10〜(-15)的水平上有所不同,而现代时钟的目标是10〜(-16)的精度。我们对BBR位移进行了相对论的高精度多体计算。对于T = 300 K时的BBR系数β,我们获得β=-(1.710±0.006)X 10〜(-14),这意味着6 X 10〜(-17)的分数不确定性。虽然按照最准确的测量方法,但我们的0.35%准确值与最近的半经验计算存在很大差异(10%)。我们在这些计算中确定了疏忽。

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