Effect of self-fields on the electron cyclotron maser instability in a dielectric loaded waveguide

被引:0
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作者
Elnaz Khalilzadeh
Amir Chakhmachi
Behrouz Maraghechi
机构
[1] Physics Faculty,Department of Physics
[2] Kharazmi University,undefined
[3] The Plasma Physics and Fusion Research School,undefined
[4] Amirkabir University of Technology,undefined
来源
The European Physical Journal D | 2015年 / 69卷
关键词
Plasma Physics;
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摘要
The influence of self-fields on the cyclotron maser instability in a hollow electron beam propagating parallel to a uniform axial magnetic field B0êz in a dielectric loaded waveguide is investigated. The theoretical analysis is carried out within the framework of linearized Vlasov-Maxwell equations. It is assumed that the beam is thin with the radial thickness much smaller than the beam radius. A new dispersion relation for azimuthally symmetric electromagnetic perturbation is derived and analyzed numerically. The influence of self-fields on the cyclotron maser instability in a dielectric loaded waveguide for different dielectric medium is studied. It is found that unlike the hollow waveguide the growth rate is increased by increasing self-fields. The instability band width decreases due to the increasing self-fields. The maximum growth rate increases gradually as self-fields increase as regards a different dielectric medium.
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