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Alternative Algorithm for Temperature Measurements of Cold Atoms in Cs Fountain Clocks

机译:CS喷泉钟中冷原子温度测量的替代算法

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We report an alternative algorithm to the deconvolution method for obtaining Gaussian velocity distribution for temperature measurements in Cs fountain clocks. We estimate the velocity distribution of the cloud of cold atoms from time-of-flight signals, at different times, by calculating the square speed point by point (PBP). Then, the temperature of the Cs atomic cloud is inferred from the width () of the velocity distribution. We have done an exhaustive comparison of the PBP algorithm with the deconvolution method using both theoretical and experimental data for Gaussian velocity distributions. Finally, when comparing the process to obtain the velocity distribution in both the PBP algorithm and the deconvolution method, it is found that our approach is easier to implement and automate.
机译:我们报告了一种反卷积方法的替代算法,用于获得高斯速度分布以用于CS喷泉时钟中的温度测量。通过计算逐点平方速度(PBP),我们可以从飞行时间信号在不同时间估算冷原子云的速度分布。然后,从速度分布的宽度()推断出Cs原子云的温度。我们使用高斯速度分布的理论和实验数据对PBP算法与反卷积方法进行了详尽的比较。最后,当比较在PBP算法和反卷积方法中获得速度分布的过程时,发现我们的方法更易于实现和自动化。

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