Measurement of the static scalar polarizability of the 88Sr+ clock transition

P. Dubé, A. Madej, M. Tibbo, J. Bernard
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引用次数: 3

Abstract

We have reported recently a high-accuracy measurement of the differential static scalar polarizability, Δα0, of the clock transition of 88Sr+. In this paper, we review the method used to make this measurement and the results obtained. Δα0 is an essential parameter for the control of the systematic shifts in ion optical frequency standards as it determines the blackbody radiation shift coefficient and the scalar Stark shift caused by micromotion. The new experimental value of Δα0 reduces the uncertainty of the blackbody radiation shift coefficient by a factor of 24, from 2 × 10-17 to 8.3 × 10-19. In addition, Δα0 determines the trap rf frequency for optimum cancellation of the positive Stark shift with the negative time-dilation shift. A suppression factor of more than 200 is obtained with the new value of Δα0, resulting in a net micromotion shift fractional uncertainty at the 10-19 level.
测量 88Sr+ 时钟转变的静态标量极化性
我们最近报道了对 88Sr+ 时钟转变的差分静态标量极化率 Δα0 的高精度测量。在本文中,我们回顾了进行这一测量所使用的方法和获得的结果。Δα0是控制离子光学频率标准中系统偏移的一个重要参数,因为它决定了黑体辐射偏移系数和微动引起的标量斯塔克偏移。Δα0的新实验值将黑体辐射偏移系数的不确定性降低了 24 倍,从 2 × 10-17 降至 8.3 × 10-19。此外,Δα0 还决定了阱射频频率,以最佳地消除正斯塔克偏移和负时间膨胀偏移。Δα0的新值使抑制因子超过200,从而使净微动位移分数不确定性达到10-19的水平。
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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