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Simulation of the development and interaction of instabilities in a relativistic electron beam under variation of the beam wall thickness

机译:在梁壁厚度变化下相对论电子束中不稳定性的开发和相互作用

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摘要

The development and interaction of Bursian and diocotron instabilities in an annular relativistic electron beam propagating in a cylindrical drift chamber are investigated analytically and numerically as functions of the beam wall thickness and the magnitude of the external uniform magnetic field. It is found that the interaction of instabilities results in the formation of a virtual cathode with a complicated rotating helical structure and several reflection regions (electron bunches) in the azimuthal direction. It is shown that the number of electron bunches in the azimuthal direction increases with decreasing beam wall thickness and depends in a complicated manner on the magnitude of the external magnetic field.
机译:在圆柱漂移室中传播的环形相对论电子束中的Bursian和测定型施用能力的开发和相互作用被分析地和数值作为梁壁厚度和外均匀磁场的幅度来研究。 发现不稳定性的相互作用导致形成虚拟阴极,其具有复杂的旋转螺旋结构和沿方位角方向的几个反射区域(电子束)。 结果表明,方位方向上的电子束的数量随着梁壁厚度的减小而增加,并且在外部磁场的大小上以复杂的方式取决于复杂的方式。

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