LHAASO-WFCTA 激光能量测量系统的性能研究
Performance of Laser Energy Measurement System for LHAASO-WFCTA
高海拔宇宙线观测站(Large High Altitude Air Shower Observatory,LHAASO)位于四川省稻城县海子山,平均海拔4 410 m。激光标定系统是LHAASO的广角切伦科夫望远镜阵列(Wide Field-of-view Cherenkov Telescope Array,WFCTA)的组成部分之一,用于标定广角切伦科夫望远镜阵列接收的光子数的绝对增益。激光标定系统中的激光能量测量系统由能量探头(Energy sensor)?能量计( Energy meter) 和温控系统3 部分组成,主要用于精确测量发射向广角切伦科夫望远镜阵列视场内的脉冲激光束的能量。主要对能量探头进行了相对标定和性能研究,并设计开发了保温系统来保证能量探头在环境恶劣的高海拔地区正常工作。 通过能量探头之间的相对标定,可以提高激光能量测量的准确性。能量探头的性能测试结果表明,在以能量探头中心为圆心?直径为8 mm的圆形区域内,其不均匀度小于1. 5%。激光束的入射角对能量探头测量激光脉冲能量几乎没有影响,但是垂直入射时能量探头反射的激光会损坏激光器,因此需要避免激光束垂直入射能量探头。此外,能量探头具有较强的温度效应。因此,独立开发了保温系统来保证能量探头的正常工作,以满足实验的要求。这些研究工作是激光标定系统进行正常工作和运行的基础。
he Large High Altitude Air Shower Observatory (LHAASO) is situated in Haizi Mountain, Daocheng County, Sichuan Province, at an average altitude of 4 410 meters. The laser calibration system is a vital component of the Wide-Field-of-view Cherenkov Telescope Array (WFCTA) in LHAASO, utilized to calibrate the absolute gain of WFCTA for the received photons. The energy measurement system in the laser calibration system comprises an energy sensor, an energy meter, and a temperature control system, primarily employed to precisely measure the energy of the pulsed laser beam emitted into the WFCTA field of view. This paper primarily focuses on the relative calibration and performance of the energy sensor, and proposes a temperature control system to ensure the energy sensor′s normal operation in the harsh plateau environment. The accuracy of energy measurement about laser pulse can be improved by relative calibration. The performance test results of the energy sensor demonstrate that the non-uniformity is less than 1.5% within the circular area with a diameter of 8 mm centered on the energy sensor. The incident angle of the laser beam has negligible impact on the measurement of the laser pulse energy by the energy sensor, but the reflection of the laser by the energy sensor can damage the laser when the laser beam is vertically incident. Hence, avoiding the vertical incidence of the laser beam on the energy sensor is crucial. Furthermore, the energy sensor exhibits a strong temperature effect. Therefore, an independent temperature control system is developed in this paper to ensure the energy sensor′s normal operation, fulfilling the experiment′s requirements. These research works serve as the foundation for the laser calibration system′s regular operation and functioning.
王 阳、解 磊、孙秦宁、陈 龙、张 勇、祝凤荣
天文学
激光能量测量高海拔宇宙线观测站相对标定不均匀度温控系统
王 阳,解 磊,孙秦宁,陈 龙,张 勇,祝凤荣.LHAASO-WFCTA 激光能量测量系统的性能研究[EB/OL].(2023-12-04)[2025-08-02].https://chinaxiv.org/abs/202312.00303.点此复制
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