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New method for temperature measurement of cold atoms in Cs fountain clocks

机译:Cs喷泉钟中冷原子温度测量的新方法

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摘要

We report a novel method for temperature measurement in a cesium fountain clock and experimental investigation about its dependence respect to diverse operational parameters. The temperature of the Cs atomic cloud is inferred from the width of the velocity distribution, which is obtained from two measurements in different regions of the spatial distribution of the atomic cloud using the time of flight (TOF) method. We use a simple process to determine the velocity distribution by calculating the square speed point by point from these two TOF signals. This new method is demonstrated to characterize the temperature of the Cs atoms on the CENAM Cs fountain clock. The minimum temperature reached in the CENAM Cs fountain clock is 612(193) nK.
机译:我们报告了一种在铯喷泉钟中进行温度测量的新方法,并就其对各种操作参数的依赖性进行了实验研究。从速度分布的宽度推断出Cs原子云的温度,该速度分布是使用飞行时间(TOF)方法从原子云空间分布的不同区域中的两次测量获得的。我们使用一个简单的过程通过从这两个TOF信号逐点计算平方速度来确定速度分布。事实证明,这种新方法可以表征CENAM Cs喷泉钟上Cs原子的温度。 CENAM Cs喷泉时钟达到的最低温度为612(193)nK。

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