胡标, 孙振海, 汪海洋, 李浩, 周翼鸿, 尹文骁, 李天明. 强流电子束产生与应用测量系统研究[J]. 实验科学与技术, 2020, 18(3): 1-6. DOI: 10.12179/1672-4550.20190222
引用本文: 胡标, 孙振海, 汪海洋, 李浩, 周翼鸿, 尹文骁, 李天明. 强流电子束产生与应用测量系统研究[J]. 实验科学与技术, 2020, 18(3): 1-6. DOI: 10.12179/1672-4550.20190222
HU Biao, SUN Zhenhai, WANG Haiyang, LI Hao, ZHOU Yihong, YIN Wenxiao, LI Tianming. Research on the Measurement System of Generation and Application of Intensive Electron Beams[J]. Experiment Science and Technology, 2020, 18(3): 1-6. DOI: 10.12179/1672-4550.20190222
Citation: HU Biao, SUN Zhenhai, WANG Haiyang, LI Hao, ZHOU Yihong, YIN Wenxiao, LI Tianming. Research on the Measurement System of Generation and Application of Intensive Electron Beams[J]. Experiment Science and Technology, 2020, 18(3): 1-6. DOI: 10.12179/1672-4550.20190222

强流电子束产生与应用测量系统研究

Research on the Measurement System of Generation and Application of Intensive Electron Beams

  • 摘要: 以高功率微波为代表的强流电子束的产生和应用在高度信息化社会中展现出巨大的应用潜力和广阔的发展前景。强流电子束产生和应用实验中通过监测强流加速器的二极管电压和电流可以判断强流加速器的工作状态,而高功率微波器件的输出特性的好坏可以通过监测高功率微波的频率、功率及模式来判断,从而实现强流电子束的产生和应用。强流电子束的产生与应用测量系统研究教学不仅为学生掌握强流加速器和相对论器件的工作原理提供好的实践平台,同时为学生在物理电子学专业课程的学习提供更直观的认识和更深入的理解。

     

    Abstract: The generation and application of intensive electron beams represented by the high power microwave have shown great potential and broad prospects in the highly informationized society. In the experiment, the working state of the intensive current accelerator can be judged by monitoring the diode voltage and current of the intensive current accelerator, and the output characteristics of the high power microwave device can be judged by the frequency, power and mode of the high power microwave, thus the generation and application of the intensive electron beams can be realized. The generation and application of intensive current electron beam measurement system research teaching not only provides a good practical platform for students to master the working principle of intensive current accelerators and relativistic devices, but also provides students with a more intuitive recognition and deeper understanding in the study of physical electronics courses.

     

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