Stability Analysis of VE Amplifiers Based on Determinant Equations

V. Jabotinski, T. Antonsen, A. Vlasov, I. Chernyavskiy
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Abstract

A general method for calculating self-excitation thresholds for a large class of standing and traveling wave structures used in klystrons, traveling wave tubes, and other vacuum-electronic devices is presented. We determine circuit parameters of RF structures that are changed due to the presence of electron beam, and analyze stability of the obtained matrices. Determinant equations defined by such stability matrices are derived. The use of the method for structures with round and arbitrary geometry beam tunnels is discussed. Analytical stability evaluation described here greatly complements the large signal beam-wave interaction CHRISTINE and TESLA family codes as well as EM PIC codes such as NEPTUNE.
基于行列式方程的VE放大器稳定性分析
提出了一种计算速调管、行波管和其他真空电子器件中使用的一类驻波和行波结构自激阈值的一般方法。我们确定了由于电子束的存在而改变的射频结构的电路参数,并分析了得到的矩阵的稳定性。导出了由这种稳定性矩阵定义的行列式方程。讨论了该方法在具有圆形和任意几何形状的梁式隧道结构中的应用。这里描述的分析稳定性评估极大地补充了大信号波束波相互作用CHRISTINE和TESLA家族代码以及EM PIC代码(如NEPTUNE)。
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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