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Influence of the Beam Self-Fields on the Dispersion Characteristics of EM Waves in a Dielectric Waveguide Filled with Plasma

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【作者】 肖集雄陈仕修田微陈堃

【Author】 XIAO Jixiong;CHEN Shixiu;TIAN Wei;CHEN Kun;School of Electrical Engineering,Wuhan University;

【机构】 School of Electrical Engineering,Wuhan University

【摘要】 Considering the self-fields of relativistic electron beam(REB), the electron beam injected in plasma will form an ion-channel, which can stably guide REB transmitted in plasma. Based on the e?ect of ion-channel, the EM dispersion characteristics in a dielectric waveguide filled with plasmas is studied by using linear electromagnetic(EM) hydrodynamics perturbation theory. Both the TM mode dispersion equation and the dispersion relation are derived. After that, a discussion on the conditions of Cherenkov radiation in this system is given. It was found that the betatron oscillation of the REB is one of the important factors for the slow-wave EM instability in this system. The dispersion relation is of the form of electromagnetic-electrostatic(EM-ES) hybrid mode, which is di?erent from the case where the e?ect of the ion channel is neglected.

【Abstract】 Considering the self-fields of relativistic electron beam(REB), the electron beam injected in plasma will form an ion-channel, which can stably guide REB transmitted in plasma. Based on the e?ect of ion-channel, the EM dispersion characteristics in a dielectric waveguide filled with plasmas is studied by using linear electromagnetic(EM) hydrodynamics perturbation theory. Both the TM mode dispersion equation and the dispersion relation are derived. After that, a discussion on the conditions of Cherenkov radiation in this system is given. It was found that the betatron oscillation of the REB is one of the important factors for the slow-wave EM instability in this system. The dispersion relation is of the form of electromagnetic-electrostatic(EM-ES) hybrid mode, which is di?erent from the case where the e?ect of the ion channel is neglected.

【基金】 supported by National Natural Science Foundation of China(Nos.11075123 and 51207171)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2014年01期
  • 【分类号】O53;TN25
  • 【下载频次】19
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