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原子扩散对原子干涉仪中布拉格衍射效率的影响。

Effect of atom diffusion on the efficiency of Bragg diffraction in atom interferometers.

作者信息

Yang Yukun, Zhang Tao, Cheng Yuan, Deng Xiaobing, Zhou Minkang, Hu Zhongkun, Luo Qin, Chen Lele

出版信息

Opt Express. 2023 Dec 18;31(26):43462-43476. doi: 10.1364/OE.505071.

Abstract

The transition efficiency of atomic Bragg diffraction as mirrors and beam splitters in Bragg atom interferometers plays an essential role in impacting the fringe contrast and measurement sensitivity. This can be attributed to the properties of atomic sources, Bragg pulse shapes, the pulse duration, and the relative position deviation of the atoms and Bragg pulses. Here, we investigate the effect of the atomic source's diffusion and velocity width on the efficiency of Bragg diffraction of the moving cold atomic cloud. The transfer efficiency of Bragg mirrors and beam splitters are numerically simulated and experimentally measured, which are well consistent in comparison. We quantify these effects of atomic diffusion and velocity width and precisely compute how Bragg pulses' efficiencies vary as functions of these parameters. Our results and methodology allow us to optimize the Bragg pulses at different atomic sources and will help in the design of large momentum transfer mirrors and beam splitters in atom interferometry experiments.

摘要

在布拉格原子干涉仪中,作为镜子和分束器的原子布拉格衍射的转换效率,在影响条纹对比度和测量灵敏度方面起着至关重要的作用。这可归因于原子源的特性、布拉格脉冲形状、脉冲持续时间以及原子与布拉格脉冲的相对位置偏差。在此,我们研究了原子源的扩散和速度宽度对移动冷原子云布拉格衍射效率的影响。对布拉格镜子和分束器的转换效率进行了数值模拟和实验测量,二者相比结果吻合良好。我们量化了原子扩散和速度宽度的这些影响,并精确计算了布拉格脉冲效率如何随这些参数变化。我们的结果和方法使我们能够在不同原子源下优化布拉格脉冲,并将有助于原子干涉测量实验中大幅动量传递镜子和分束器的设计。

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