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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Sensitive magnetometry based on nonlinear magneto-optical rotation - art. no. 043403
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Sensitive magnetometry based on nonlinear magneto-optical rotation - art. no. 043403

机译:基于非线性磁光旋转的灵敏磁力测量-艺术。没有。 043403

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摘要

Application of nonlinear magneto-optical (Faraday) rotation to magnetometry is investigated. Our experimental setup consists of a modulation polarimeter that measures rotation of the polarization plane of a laser beam resonant with transitions in Rb. Rb vapor is contained in an evacuated cell with antirelaxation coating that enables atomic ground-state polarization to survive many thousand wall collisions. This leads to ultranarrow features (similar to 10(-6) G) in the magnetic-field dependence of optical rotation. The potential sensitivity of this scheme to sub-mu G magnetic fields as a function of atomic density, light intensity, and light frequency is investigated near the D1 and D2 lines of Rb-85. It is shown that through an appropriate choice of parameters the shot-noise-limited sensitivity to small magnetic fields can reach 3x10(-12) G/root Hz. [References: 45]
机译:研究了非线性磁光(法拉第)旋转在磁力计中的应用。我们的实验装置包括一个调制偏振计,该偏振计测量的是在Rb中跃迁的激光束的偏振面的旋转。 Rb蒸气包含在具有抗松弛涂层的真空电池中,该涂层可使原子基态极化经受住数千次壁碰撞。这导致光学旋转的磁场依赖性具有超窄特征(类似于10(-6)G)。在Rb-85的D1和D2线附近,研究了该方案对sub-mu G磁场的势敏性,它是原子密度,光强度和光频率的函数。结果表明,通过适当选择参数,散粒噪声对小磁场的敏感度可以达到3x10(-12)G /根Hz。 [参考:45]

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