用于加速器准直的球形准直器扫频激光干涉测距技术研究
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1.天津大学福州国际联合学院;2.中国科学院高能物理研究所;3.河南省科学院高能物理研究中心;4.天津大学

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Research on Spherical Collimator Frequency Sweeping Laser Interferometry for Distance Measurement in Accelerator Alignment
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1.Tianjin University;2.Institute of High Energy Physics,Chinese Academy of Sciences;3.Center for High Energy Physics,Henan Academy of Sciences,Henan

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    摘要:

    扫频激光干涉测距方法可以实现大尺度范围内的高精度绝对距离测量,在对测量精度、稳定性及环境适应性均有严苛要求的加速器准直领域,具有很高的研究与应用价值。研究搭建了包含光开关的基于气体吸收池(H13C14N, HCN)的扫频激光测距系统,实现多路激光测距功能。因为粒子加速器准直过程中广泛使用激光跟踪仪进行设备标定和安装,设计可以和激光跟踪仪角隅反射镜共用靶标座的球形准直器。为验证系统性能,在模拟加速器准直的实验环境中开展了测距精度测试,实验结果表明:所设计的系统满足加速器准直需求,在30 m测量范围内,测距误差不超过30 μm。该系统为加速器准直提供了高精度、高适应性的测量解决方案,具有重要的工程实用意义。

    Abstract:

    The frequency sweeping interferometer enables high-precision absolute distance measurement over large scales, demonstrating significant research and application value in the field of accelerator alignment, where stringent requirements for measurement accuracy, stability, and environmental adaptability are imposed. A frequency sweeping interferometer system incorporating an HCN (H13C14N) gas absorption cell and an optical switch was developed to achieve multi-channel laser ranging functionality. Since laser trackers are widely used for equipment calibration and installation during accelerator alignment, a spherical collimator compatible with the target mount of laser tracker retroreflectors was designed. To validate system performance, distance measurement accuracy tests were conducted in an experimental environment simulating accelerator alignment. The results indicate that the designed system meets accelerator alignment requirements, with a ranging error not exceeding 30 μm within a 30?m measurement range. This system provides a high-precision, highly adaptable measurement solution for accelerator alignment, offering substantial practical engineering significance.

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  • 收稿日期:2025-10-19
  • 最后修改日期:2026-02-10
  • 录用日期:2026-02-15
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