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High-Current Electron Beams for High-Power Free-Electron Masers Based on Two-Dimensional Periodic Lattices

机译:基于二维周期晶格的高功率自由电子夹大电流电子束

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High-power gigawatt-level radiation can be generated by the interaction of an electromagnetic wave and an annular electron beam with a transverse dimension much larger than the operating wavelength. The use of such a large-circumference annular beam allows the generation of high beam currents while also maintaining low space charge and RF power densities inside the interaction region. This circumvents the problems associated with potential depression in the beam channel and RF breakdown inside the oscillator. In this paper, we present the studies of high-current magnetically confined annular electron beams and discuss their production and transportation through a coaxial beam channel which formed the interaction region of a free-electron maser (FEM). The results from numerical simulations, using the software packages KARAT and MAGIC, are compared with the experimental measurements. The operation of a FEM, driven by a high-current annular electron beam, is presented, and the tunability of the maser, inside a frequency range defined by an input 2-D Bragg mirror, is demonstrated.
机译:电磁波和环形电子束的相互作用可以产生高功率的千兆瓦级辐射,其横向尺寸远大于工作波长。这种大周长的环形束的使用允许产生高束电流,同时还保持相互作用区域内的低空间电荷和RF功率密度。这就避免了与光束通道中的电位下降和振荡器内部的RF击穿相关的问题。在本文中,我们介绍了对大电流磁约束环形电子束的研究,并讨论了它们通过同轴束通道的产生和传输,该通道形成了自由电子脉搏(FEM)的相互作用区域。使用软件包KARAT和MAGIC将数值模拟的结果与实验测量值进行比较。给出了由高电流环形电子束驱动的有限元方法的操作,并说明了在由输入二维布拉格镜定义的频率范围内的激射器的可调性。

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