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切伦科夫辐射的强流电子束均匀性光学诊断
引用本文:蔡丹,刘列,巨金川,王潇. 切伦科夫辐射的强流电子束均匀性光学诊断[J]. 国防科技大学学报, 2015, 37(2): 14-18
作者姓名:蔡丹  刘列  巨金川  王潇
作者单位:1. 国防科技大学 光电科学与工程学院,湖南 长沙,410073
2. 中国人民解放军 78010 部队,四川 成都,610000
基金项目:国家自然科学基金资助项目(11305263,61401484)
摘    要:透明介质中带电粒子的运动速度大于介质中的光速时就会产生切伦科夫辐射光。搭建了基于切伦科夫辐射光的强流电子束均匀性诊断系统,实现了时间和空间分辨的纳秒级电子束均匀性光学诊断。利用程序对诊断系统进行设计。在此基础上对两种天鹅绒阴极发射均匀性进行光学诊断测量。结果表明:在相同电参数下,碳纤维天鹅绒较化纤天鹅绒具有更好的发射性能,与之对应的切伦科夫辐射光斑面积更大,其亮度扫描曲线不但中心增强区域较化纤天鹅绒宽,在其边缘附近也有较强的亮度分布;通过分析切伦科夫辐射光斑的分布和强弱的时间分辨图像,可以得到阴极在电脉冲过程中的运行状态,具有10ns~100ns级时间分辨特性。

关 键 词:强流电子束  时间分辨均匀性诊断  高速分幅相机
收稿时间:2015-01-07

Optical diagnosis system based Cerenkov radiation for the uniformity of intense electron beam diode
CAI Dan,LIU Lie,JU Jinchuan and WANG Xiao. Optical diagnosis system based Cerenkov radiation for the uniformity of intense electron beam diode[J]. Journal of National University of Defense Technology, 2015, 37(2): 14-18
Authors:CAI Dan  LIU Lie  JU Jinchuan  WANG Xiao
Affiliation:1.College of Optoelectronic Science and Engineering, National University of Defense Technology, Changsha 410073, China,1.College of Optoelectronic Science and Engineering, National University of Defense Technology, Changsha 410073, China,1.College of Optoelectronic Science and Engineering, National University of Defense Technology, Changsha 410073, China and 2. The PLA Unit 78010, Chengdu 610000, China
Abstract:Time-and-space resolved comparison of electron emission uniformity in the plane diode with cathodes made of carbon velvet and polymer velvet has been performed. The diode was powered by a 350~450kV and 120ns pulse. Before the operation of a series experiments, two different simulation codes were utilized to design the experiment structure. The emission uniformity of two kinds of velvet sample were studied. It was found that the carbon velvet cathode has much bigger central enhancement zone and the Cerenkov radiation light of the area near the edge was also brighter. Moreover the operating state of diode could be obtained by analyzing the time evolutions of Cerenkov radiation light.
Keywords:high-current electron beam  time and space-resolved plasma diagnostics  high speed framing cameral
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