Field-gradient measurement using a Stern-Gerlach atomic interferometer with butterfly geometry

Changhun Oh, Hyukjoon Kwon, Liang Jiang, M. Kim
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引用次数: 1

Abstract

Atomic interferometers have been studied as a promising device for precise sensing of external fields. Among various configurations, a particular configuration with a butterfly-shaped geometry has been designed to sensitively probe field gradients. We introduce a Stern-Gerlach (SG) butterfly interferometer by incorporating magnetic field in the conventional butterfly-shaped configuration. Atomic trajectories of the interferometer can be flexibly adjusted by controlling magnetic fields to increase the sensitivity of the interferometer, while the conventional butterfly interferometer using Raman transitions can be understood as a special case. We also show that the SG interferometer can keep high contrast against a misalignment in position and momentum caused by the field gradient.
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采用蝶形结构的斯特恩-格拉赫原子干涉仪进行场梯度测量
原子干涉仪是一种很有前途的外场精确传感装置。在各种配置中,设计了一种具有蝴蝶形状几何结构的特殊配置,以灵敏地探测场梯度。本文介绍了一种将磁场引入传统蝶形结构的Stern-Gerlach (SG)蝶形干涉仪。通过控制磁场可以灵活调整干涉仪的原子轨迹,提高干涉仪的灵敏度,而传统的利用拉曼跃迁的蝴蝶干涉仪可以理解为一个特例。我们还表明,SG干涉仪可以在场梯度引起的位置和动量不对准的情况下保持高对比度。
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