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等离子体对相对论返波管工作影响的粒子模拟
引用本文:袁玉章, 张军, 白珍, 等. 等离子体对相对论返波管工作影响的粒子模拟[J]. 强激光与粒子束, 2018, 30: 043002. doi: 10.11884/HPLPB201830.170444
作者姓名:袁玉章  张军  白珍  钟辉煌
作者单位:国防科技大学 前沿交叉学科学院 高功率微波技术研究所,长沙 410073
基金项目:国家高技术发展计划项目
摘    要:金属高频结构的射频击穿是引起功率下降和脉冲缩短的重要原因,是限制高功率微波(HPM)向更高功率、更长脉冲发展的重要因素。射频击穿的物理过程极其复杂,并且开展射频击穿研究对实验条件等要求高,因此粒子模拟是研究射频击穿的重要手段。通过在慢波结构表面设置爆炸发射电子和离子的方式模拟等离子体对一个X波段的相对论返波振荡器(RBWO)和一个Ka波段的RBWO工作的影响。粒子模拟结果表明,对于分段式慢波结构,后段慢波结构产生等离子体会对电子束的调制造成影响,进而影响器件正常工作,引起微波功率下降。当等离子体由质量较轻的正离子和电子组成时,会对束波作用造成更大的影响,引起较大的输出功率下降。相同密度的射频击穿等离子体对Ka波段RBWO工作的影响大于对X波段RBWO的影响。

关 键 词:高功率微波   相对论返波管   射频击穿   粒子模拟
收稿时间:2017-11-08
修稿时间:2017-12-13

Simulation research on influence of RF breakdown plasma on performance of relative backward wave oscillator
Yuang Yuzhang, Zhang Jun, Bai Zhen, et al. Simulation research on influence of RF breakdown plasma on performance of relative backward wave oscillator[J]. High Power Laser and Particle Beams, 2018, 30: 043002. doi: 10.11884/HPLPB201830.170444
Authors:Yuang Yuzhang  Zhang Jun  Bai Zhen  Zhong Huihuang
Affiliation:Institute of High Power Microwave Technology, College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China
Abstract:RF breakdown of the metallic high frequency structures is an important reason of power decrease and pulse shortening; it is also an important limitation of the development of high power microwave (HPM) to higher power and longer pulse. The physical process of RF breakdown is pretty complicated, and the experiment research of RF breakdown is hard to conduct, thus simulation research becomes an important method. We simulated the influence of plasma on the performance of an X-band RBWO and a Ka-band RBWO by setting electron and ion emission from the surface of SWSs. The simulation results show that the formation of plasma in back SWSs will influence the performance of RBWO by influencing the electron beam. When the plasma consists of light ions and electrons, it will bring stronger influence on the beam wave interaction, leading to power decrease in a high degree. The breakdown plasma has a bigger influence on the Ka-band RBWO than X-band RBWO.
Keywords:high power microwave  RBWO  RF breakdown  PIC simulation
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