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Electromagnetic dispersion characteristics of a high energy electron beam guided with an ion channel

Electromagnetic dispersion characteristics of a high energy electron beam guided with an ion channel
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摘要 Taking self-fields into consideration, dispersion properties of two types of electromagnetic modes for a high energy electron beam guided with an ion channel are investigated by using the linear perturbation theory. The dependences of the dispersion frequencies of electromagnetic waves on the electron beam radius, betatron frequency and boundary current are revealed. It is found that the electron beam radius and betatron frequency have different influences on the electromagnetic waves dispersion behavior by compared with the previous works. As the boundary current is taken into account, the TM modes will have two branches and a lowfrequency branch emerged as the new branch in strong ion channel case. This new branch has similar dispersion behavior to the betatron modes. For TE modes, there are two branches and they have different dispersion behaviors in strong ion channel case. However, in weak ion channel case, the dispersion behaviors for both of the low frequency and high frequency branches are similar. Taking self-fields into consideration, dispersion properties of two types of electromagnetic modes for a high energy electron beam guided with an ion channel are investigated by using the linear perturbation theory. The dependences of the dispersion frequencies of electromagnetic waves on the electron beam radius, betatron frequency and boundary current are revealed. It is found that the electron beam radius and betatron frequency have different influences on the electromagnetic waves dispersion behavior by compared with the previous works. As the boundary current is taken into account, the TM modes will have two branches and a lowfrequency branch emerged as the new branch in strong ion channel case. This new branch has similar dispersion behavior to the betatron modes. For TE modes, there are two branches and they have different dispersion behaviors in strong ion channel case. However, in weak ion channel case, the dispersion behaviors for both of the low frequency and high frequency branches are similar.
作者 肖集雄 曾中 王之江 夏冬辉 刘昌海 Jixiong XIAO Zhong ZENG Zhijiang WANG Donghui XIA Changhai LIU(Institute of fusion and plasma research, Huazhong University of Science and Technology, Wuhan 430074, People's Republic of Chin)
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2017年第2期20-27,共8页 等离子体科学和技术(英文版)
基金 supported by the National ITER project Foundation of China(Nos.2013GB106001 and 2013GB106003)
关键词 dispersion behavior electromagnetic eigenmodes betatron oscillation ion channel dispersion behavior, electromagnetic eigenmodes, betatron oscillation, ion channel
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