后盖:一种基于磁场与惯性旋转双探头原位解耦的新型共磁仪(ad . Quantum technology . 8/2025)

IF 4.3 Q1 OPTICS
Ye Liu, Wenfeng Fan, Yao Liu, Jiale Quan, Haoying Pang, Xin Wang, Longyan Ma, Wei Quan
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引用次数: 0

摘要

在第2500253号文章中,范文峰、权伟及其同事报道了一种新的K-Rb-21Ne原子磁强计的原位磁噪声补偿机制,利用了两种碱金属的自旋极化差异。该系统在原位解耦磁场和惯性旋转,能够同时测量两个参数,并增强精确自旋相互作用研究的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Back Cover: A Novel Co-Magnetometer Based on Double-Probe in Situ Decoupling of Magnetic Field and Inertia Rotation (Adv. Quantum Technol. 8/2025)

Back Cover: A Novel Co-Magnetometer Based on Double-Probe in Situ Decoupling of Magnetic Field and Inertia Rotation (Adv. Quantum Technol. 8/2025)

Back Cover: A Novel Co-Magnetometer Based on Double-Probe in Situ Decoupling of Magnetic Field and Inertia Rotation (Adv. Quantum Technol. 8/2025)

Back Cover: A Novel Co-Magnetometer Based on Double-Probe in Situ Decoupling of Magnetic Field and Inertia Rotation (Adv. Quantum Technol. 8/2025)

Back Cover: A Novel Co-Magnetometer Based on Double-Probe in Situ Decoupling of Magnetic Field and Inertia Rotation (Adv. Quantum Technol. 8/2025)

In article number 2500253, Wenfeng Fan, Wei Quan, and co-workers report a novel in-situ magnetic noise compensation mechanism in a K-Rb-21Ne atomic comagnetometer, leveraging differential spin polarization of two alkali metals. This system decouples magnetic fields and inertial rotations in situ, enabling simultaneous measurement of both parameters and enhancing stability for precision spin-interaction studies.

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