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首页> 外文期刊>International Journal of Infrared and Millimeter Waves >EXCITATION OF MICROWAVE BY AN ANNULAR ELECTRON BEAM IN A PLASMA-FILLED DIELECTRIC LINED WAVEGUIDE
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EXCITATION OF MICROWAVE BY AN ANNULAR ELECTRON BEAM IN A PLASMA-FILLED DIELECTRIC LINED WAVEGUIDE

机译:等离子体填充衬里波导中环形电子束对微波的激发

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An axial relativistic electron beam passing through a slow wave structure is unstable to an electromagnetic perturbation whose phase velocity equals the velocity of the beam. This phenomenon of Cherenkov emission is the basis of all traveling wave tubes. In this paper an excitation of Cherenkov radiation by a thin annular relativistic electron beam in a plasma-filled dielectric-lined vvaveguide is analysed by use of the self-consistent linear theory. The effect of the thin annular electron beam on the beam-wave interaction is completely described by a jump condition. The dispersion equation and the simultaneous condition of the beam-wave interaction are derived. Finally, the growth rate of the wave is obtained, and the effect of the background plasma density and the electron beam radius on the growth rate of the wave are presented.
机译:穿过慢波结构的轴向相对论电子束对于电磁干扰不稳定,该电磁干扰的相速度等于电子束的速度。 Cherenkov发射的这种现象是所有行波管的基础。本文利用自洽线性理论分析了等离子体填充的介质衬里的vvaveguide中的细环形相对论电子束激发的Cherenkov辐射。环形电子束对束波相互作用的影响完全由跳跃条件描述。推导了色散方程和束波相互作用的同时条件。最后,获得了波的增长率,并提出了背景等离子体密度和电子束半径对波的增长率的影响。

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