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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Velocity distribution and second-order Doppler shift in an optically pumped cesium beam frequency standard
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Velocity distribution and second-order Doppler shift in an optically pumped cesium beam frequency standard

机译:光泵浦铯束频率标准中的速度分布和二阶多普勒频移

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The velocity distribution and the second-order Doppler shift were obtained in an optically pumped cesium beam frequency standard at the Korea Research Institute of Standards and Science (KRISS) by using Fourier transforms of Ramsey lineshapes. The second-order Doppler shift changes as much as 3/spl times/10/sup -15/ for a variation 20 K at an oven temperature of 383 K. It also changes at a rate of -2.3/spl times/10/sup -14//dB around an optimum microwave power. We found that the velocity selective effect of a tilted laser beam can reduce the second-order Doppler shift. In particular, this effect becomes larger as the linewidth of the laser beam becomes narrower.
机译:速度分布和二阶多普勒频移是通过使用Ramsey线形的傅里叶变换在韩国标准科学研究院(KRISS)的光抽运铯束频率标准中获得的。在383 K的烤箱温度下,每20 K的变化,二阶多普勒频移变化高达3 / spl次/ 10 / sup -15 /。它也以-2.3 / spl次/ 10 / sup的速率变化。在最佳微波功率附近为-14 // dB。我们发现倾斜的激光束的速度选择效应可以减少二阶多普勒频移。特别地,随着激光束的线宽变窄,该效果变得更大。

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