基于COMSOL Multiphysics的铷原子光钟C场线圈磁场均匀性优化研究
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Magnetic field uniformity optimization for the C-field coil in rubidium atomic optical clock based on COMSOL Multiphysics
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    摘要:

    针对铷原子光钟直螺线管在有限尺寸约束下磁场均匀性不足的问题,基于COMSOL Multiphysics仿真软件,对置于磁屏蔽筒内的多段式C场线圈结构进行参数化建模研究,优化线圈分段数量、匝数密度等指标,提升中心轴线上目标区域的磁场均匀性。研究结果显示:优化后,五段式线圈[80,120] mm区域的磁场非均匀度降至0.078%;七段式线圈[80,120] mm区域的磁场非均匀度降至0.033%。本研究为实现铷原子光钟有限空间内的高均匀性C场提供了重要技术借鉴。

    Abstract:

    To address the problem of insufficient magnetic field uniformity in solenoid coils for rubidium optical clocks under limited size constraints, this paper conducts a parametric modeling study on a multi-segment C-field coil structure inside a magnetic shield cylinder using the COMSOL Multiphysics simulation software. The number of coil segments, turns density, and other structural parameters are optimized to enhance the magnetic field uniformity in the target region along the central axis. The research results show that after optimization, the magnetic field non-uniformity in the [80, 120] mm region of the five-segment coil is reduced to 0.078%, while that of the seven-segment coil is further reduced to 0.033%. This research provides important technical insights for achieving a high-uniformity C-field in rubidium optical clocks within confined spaces.

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刘诗佳, 黄军超, 薛毅聪, 陈晨, 张亚飞, 马明.基于COMSOL Multiphysics的铷原子光钟C场线圈磁场均匀性优化研究[J].计测技术,2026,46(3):22~29:
10.11823/j. issn.1674-5795.2026.03.04.

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  • 在线发布日期: 2026-07-02
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