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采用激光功率差分法的单光束铯-氖自旋交换弛豫自由原子磁力仪

Single beam Cs-Ne SERF atomic magnetometer with the laser power differential method.

作者信息

Chen Yao, Zhao Libo, Zhang Ning, Yu Mingzhi, Ma Yintao, Han Xiangguang, Zhao Man, Lin Qijing, Yang Ping, Jiang Zhuangde

出版信息

Opt Express. 2022 May 9;30(10):16541-16552. doi: 10.1364/OE.450571.

Abstract

We describe a single beam compact spin exchange relaxation free (SERF) magnetometer whose configuration is simple and compatible with the silicon-glass bonding micro-machining method. Due to the small size of the vapor cell utilized in a miniature atomic magnetometer, the wall relaxation could not be neglected. In this study we show that Ne buffer gas is more efficient than that of the other typically utilized gas species such as nitrogen and helium for wall relaxation reduction theoretically and experimentally. 3 Amagats (1 Amagat=2.69×10/cm) Ne gas is filled in the vapor cell and this is the first demonstration of a Cs-Ne SERF magnetometer. In order to reduce the laser amplitude noise and the large background detection offset, which is reported to be the main noise source of a single beam absorption SERF magnetometer, we developed a laser power differential method and a factor of approximately two improvement of the power noise suppression has been demonstrated. In order to reduce the power consumption of the magnetometer, the Cs based atomic magnetometer is studied. We did an optimization of the magnetometer and a sensitivity of 23fT/Hz@100Hz has been achieved. This is the first demonstration of a single beam Cs based SERF magnetometer.

摘要

我们描述了一种单光束紧凑型自旋交换无弛豫(SERF)磁力计,其结构简单,与硅 - 玻璃键合微加工方法兼容。由于微型原子磁力计中使用的蒸汽池尺寸较小,壁弛豫不可忽略。在本研究中,我们从理论和实验上表明,对于减少壁弛豫,氖缓冲气体比其他常用气体(如氮气和氦气)更有效。在蒸汽池中充入3阿马格(1阿马格 = 2.69×10/cm)的氖气,这是铯 - 氖SERF磁力计的首次演示。为了降低激光幅度噪声以及据报道是单光束吸收SERF磁力计主要噪声源的大背景检测偏移,我们开发了一种激光功率差分方法,并且已证明功率噪声抑制提高了约两倍。为了降低磁力计的功耗,对基于铯的原子磁力计进行了研究。我们对磁力计进行了优化,实现了100Hz时23fT/Hz的灵敏度。这是单光束基于铯的SERF磁力计的首次演示。

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