Frequency and Time Group, Measurement Science and Standards Portfolio, National Research Council of Canada, Ottawa, Canada K1A 0R6.
Phys Rev Lett. 2014 May 2;112(17):173002. doi: 10.1103/PhysRevLett.112.173002. Epub 2014 Apr 29.
We report a high-accuracy measurement of the differential static scalar polarizability Δα(0) of the 5s(2)S(1/2)-4d(2)D(5/2) transition of the (88)Sr(+) ion. The high accuracy is obtained by comparing the micromotion-induced positive scalar Stark shift to the negative time-dilation shift. Measurement of the trap drive frequency where these shifts cancel is used to determine Δα(0) without the need to determine the electric field. Δα(0) is a critical parameter for the operation of frequency standards as it determines the blackbody radiation frequency shift coefficient, the largest source of uncertainty in the (88)Sr(+) ion clock. The measured value of Δα(0) is -4.7938(71) × 10(-40) J m(2)/V(2). Taking into account the dynamic correction, the blackbody shift at 300 K is 0.247,99(37) Hz. The contribution of the blackbody shift coefficient to the uncertainty of the ion standard has been reduced by a factor of 24, from 2 × 10(-17) to 8.3 × 10(-19). The revised total uncertainty of our reference standard is 1.2 × 10(-17), limited by the blackbody field evaluation. An additional benefit of the low uncertainty of Δα(0) is the ability to suppress, by a factor of about 200, the net micromotion frequency shifts.
我们报告了对 (88)Sr(+) 离子的 5s(2)S(1/2)-4d(2)D(5/2) 跃迁的差分静态标量极化率 Δα(0) 的高精度测量。通过比较微运动引起的正标量斯塔克位移与负时间膨胀位移,实现了高精度。测量这些位移相消的陷阱驱动频率用于确定 Δα(0),而无需确定电场。Δα(0) 是频率标准操作的关键参数,因为它决定了黑体辐射频移系数,这是 (88)Sr(+) 离子钟最大的不确定源。测量得到的 Δα(0) 值为-4.7938(71)×10(-40) J m(2)/V(2)。考虑到动态修正,300 K 时的黑体位移为 0.247,99(37) Hz。黑体位移系数对离子标准不确定性的贡献已减少了 24 倍,从 2×10(-17)降至 8.3×10(-19)。我们参考标准的修订总不确定度为 1.2×10(-17),受黑体场评估限制。Δα(0) 低不确定性的另一个好处是能够抑制净微运动频率位移约 200 倍。