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氟化铅超快响应光电倍增管研制及性能研究

金真 王志 孙建宁 王宁 李静雯 王兴超 司曙光 吴凯 吴超 黄国瑞 周延 赵敏 侯巍 李安然

金真, 王志, 孙建宁, 等. 氟化铅超快响应光电倍增管研制及性能研究[J]. 强激光与粒子束. doi: 10.11884/HPLPB202638.250392
引用本文: 金真, 王志, 孙建宁, 等. 氟化铅超快响应光电倍增管研制及性能研究[J]. 强激光与粒子束. doi: 10.11884/HPLPB202638.250392
Jin Zhen, Wang Zhi, Sun Jianning, et al. Development and performance study of lead fluoride ultrafast response photomultiplier tube[J]. High Power Laser and Particle Beams. doi: 10.11884/HPLPB202638.250392
Citation: Jin Zhen, Wang Zhi, Sun Jianning, et al. Development and performance study of lead fluoride ultrafast response photomultiplier tube[J]. High Power Laser and Particle Beams. doi: 10.11884/HPLPB202638.250392

氟化铅超快响应光电倍增管研制及性能研究

doi: 10.11884/HPLPB202638.250392
详细信息
    作者简介:

    金 真,zhen_jin999@163.com

  • 中图分类号: TN152

Development and performance study of lead fluoride ultrafast response photomultiplier tube

  • 摘要: 研制了一种基于氟化铅(PbF2)光窗、微通道板(MCP)、锥形阳极集成的超快响应光电倍增管。PbF2晶体以其超快的契伦科夫辐射为主导的发光机理,成为实现皮秒级时间分辨的理想闪烁体与光窗材料[12]。在制备方法上,为保护氟化铅晶体及避免氟化铅晶体高膨胀系数带来的高温膜层失效,采用蒸镀过渡膜层的方式,在样管密封上后端采用激光焊接、前端采用热压铟封的方式进行整管密接,最终制备出性能可测的氟化铅超快响应光电倍增管产品。同时对其进行了性能评估和数据分析,其量子效率、增益、上升时间等核心指标与常规快时间响应微通道板型光电倍增管性能基本相当,具备较高的光电转换效率、超快的时间响应、较高的二次电子倍增能力,为后续超快探测领域提供试验基础。
  • 图  1  超快响应结构图

    Figure  1.  Ultra fast response structure diagram

    图  2  氟化铅光窗制备图

    Figure  2.  Preparation diagram of lead fluoride light window

    图  3  量子效率测试系统

    Figure  3.  Cathode radiation sensitivity test system

    图  4  单光子性能测试系统

    Figure  4.  Typical single photon spectrum

    图  5  典型单光子谱

    Figure  5.  Cathode radiation sensitivity test system

    图  6  时间特性

    Figure  6.  Time characteristics

    图  7  时间特性测试系统

    Figure  7.  Test system of time characteristics

    图  8  超快响应光电倍增管

    Figure  8.  Ultrafast response photomultiplier tube

    图  9  PbF2光窗

    Figure  9.  Lead fluoride light window

    表  1  实验结果

    Table  1.   Results of experiments

    tube light window material cathode radiation sensitivity/% voltage/V gain rise time/ps
    PMT1 PbF2 16.0 1690 1.0×106 140
    PMT2 PbF2 11.2 2160 1.0×106 145
    PMT3 Borosilicate 15.0 2170 1.0×106 144
    下载: 导出CSV
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出版历程
  • 收稿日期:  2025-11-02
  • 修回日期:  2025-12-27
  • 录用日期:  2025-12-15
  • 网络出版日期:  2026-02-27

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