首页> 外文期刊>IEEE Transactions on Plasma Science >Excitation of the Azimuthal Surface Waves in Electron Cyclotron Frequency Range by Rotating Electron Beam in a Coaxial Waveguide
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Excitation of the Azimuthal Surface Waves in Electron Cyclotron Frequency Range by Rotating Electron Beam in a Coaxial Waveguide

机译:同轴波导中电子束的旋转激发电子回旋加速器频率范围内的方位面波

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The initial stage of interaction between gyrating beam of electrons, which move along Larmor orbits in a narrow gap between a cylindrical plasma layer and an external screen of a metal coaxial waveguide, and electromagnetic eigenwaves is studied theoretically. These waves are extraordinary polarized; they propagate along the azimuthal angle across an axial external steady magnetic field in the electron cyclotron frequency range. The numerical analysis shows that existence of internal metal conductor affects the magnitude of the growth rate weakly. It narrows the range of effective wavenumbers within which effective wave excitation takes place when compared with the case of absence of this conductor. Excitation of these modes is found to be impossible for resonators with relatively small external radii and low plasma densities when compared with a similar structure completely filled with plasma.
机译:从理论上研究了电子旋转波的相互作用的初始阶段,该电子束沿着拉莫尔轨道在圆柱形等离子体层和金属同轴波导的外部屏幕之间的狭窄间隙中沿拉莫尔轨道运动,并进行了研究。这些波被非常极化。它们沿电子回旋频率范围内的轴向外部稳定磁场沿方位角传播。数值分析表明,内部金属导体的存在对增长率的大小影响很小。与没有导体的情况相比,它缩小了有效波激发的有效波数范围。与完全充满等离子体的类似结构相比,对于具有相对较小的外部半径和较低的等离子体密度的谐振器来说,发现不可能激发这些模式。

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