Studies of self‐consistent field structure in a quasioptical gyrotron

T. Antonsen, A. Bondeson, M. Roulin, M. Tran
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Abstract

The presence of an electron beam in a quasioptical gyrotron cavity alters the structure of the fields from that of the empty cavity. A computer code has been written that calculates this alteration for either an electron beam or a thin dielectric tube placed in the cavity. Experiments measuring the quality factor of such a cavity were performed for the case of a dielectric tube and the results agree with the predictions of the code. Simulations of the case of an electron beam indicate that self‐consistent effects can be made small, in that almost all the power leaves the cavity in a symmetric Gaussian‐like mode, provided the resonator parameters are chosen carefully.
准光回旋管自洽场结构的研究
电子束在准光学回旋管腔中的存在改变了场的结构与空腔的结构。已经编写了一个计算机代码来计算电子束或放置在腔中的薄电介质管的这种变化。以介质管为例,进行了该空腔质量因数的测量实验,结果与规范的预测一致。电子束的模拟表明,只要仔细选择谐振器参数,几乎所有的功率都以对称的类高斯模式离开腔体,自洽效应可以被减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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