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一种用于碱金属电子自旋极化测定的简单装置。

A simple setup for alkali metal electronic spin polarimetry.

作者信息

Kelley M, Branca R T

机构信息

Department of Physics and Astronomy, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27514, USA.

出版信息

AIP Adv. 2022 Sep 12;12(9):095307. doi: 10.1063/5.0101537. eCollection 2022 Sep.

Abstract

Faraday rotation is considered a gold standard measurement of the electronic spin polarization of an alkali metal vapor produced under optical pumping. However, during the production of large volumes of hyperpolarized xenon gas, transmission monitoring measurements, otherwise known as field cycling measurements, are generally employed to measure the spin polarization of alkali metal atoms as this method is easier to implement than Faraday rotation on standard polarizer setups. Here, we present a simple, low-cost experimental setup to perform Faraday rotation measurements of the electronic spin polarization of alkali metal atoms that can be easily implemented on standard polarizer setups. We then compare Rb polarization measurements obtained with the Faraday rotation method to those obtained with the transmission monitoring method. To our knowledge, a direct comparison of these methods has never been made. Overall, we found good agreement between the two methods, but at low Rb density and high laser power, we found evidence of nonlinear magneto-optical effects that may prevent Faraday rotation from being used under these conditions.

摘要

法拉第旋转被认为是光泵浦下产生的碱金属蒸汽电子自旋极化的金标准测量方法。然而,在大量超极化氙气的生产过程中,通常采用透射监测测量(也称为场循环测量)来测量碱金属原子的自旋极化,因为这种方法在标准偏振器设置上比法拉第旋转更容易实施。在此,我们展示了一种简单、低成本的实验装置,用于在标准偏振器设置上轻松实施的碱金属原子电子自旋极化的法拉第旋转测量。然后,我们将用法拉第旋转方法获得的铷极化测量结果与用透射监测方法获得的结果进行比较。据我们所知,从未对这些方法进行过直接比较。总体而言,我们发现这两种方法之间有很好的一致性,但在低铷密度和高激光功率下,我们发现了可能阻止在这些条件下使用法拉第旋转的非线性磁光效应的证据。

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