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电子诱发波导微放电实验研究
引用本文:任三孩,古松,谭谦,叶新,方进勇.电子诱发波导微放电实验研究[J].强激光与粒子束,2023,35(3):034005-1-034005-6.
作者姓名:任三孩  古松  谭谦  叶新  方进勇
作者单位:1.北京跟踪与通信技术研究所,北京 100094
摘    要:针对宇航微波器件功率密度越来越大,空间电子可能诱发微波器件发生微放电的潜在威胁,通过设计特殊波导结构,利用电子枪提供的种子电子入射到特殊波导内,在波导内通入大功率微波信号,利用检波器和示波器分别检测透射波形和反射波形,观察微放电现象的持续过程;改变电子入射能量,观测到不同程度的微放电现象,该电子枪提供种子电子诱发波导微放电效应的实验方法为微波器件微放电效应研究提供了重要手段。

关 键 词:电子发射  微波电磁场  微放电效应  大功率微波源
收稿时间:2022-11-23

Experimential study of multipactor induced by electrons waveguide
Institution:1.Beijing Institute of Tracking and Telecommunications Technology, Beijing 100094, China2.China Academy of Space Technology (Xi’an), Xi’an 710100, China)
Abstract:With the increasing power density of aerospace microwave devices, the possibility of multipactor effect in microwave devices is greatly increased. In view of the potential threat that space electronics may induce the multipactor discharge in microwave devices, a special waveguide structure was designed to study the multipactor discharge. The electron gun provided electron into special waveguide when high power microwave signal were introduced into the waveguide. The power detector and oscillograph were used to detect transmission waveforms and reflection waveform respectively. The continuous process of multipactor phenomenon was obviously observed. This work verifies that electron beam can induce multipactor phenomenon and provides an important means to study multipactor effect of microwave devices.
Keywords:
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