Experimental studies of an axial vircator with different cathode geometries

M. Karlsson, F. Olsson, S.-E. Wippa, J. Axinger, B.O. Bergman
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引用次数: 1

Abstract

This paper describes the numerical study and experimental results of an axial vircator with axial extraction. The microwave source is driven by a Marx generator and excludes any type of pulse forming device between the two subsystems. The main reason for this special arrangement is the final goal to build a compact and robust high power microwave system. The drawback is usually a lower efficiency of the microwave source. The vircator operates with the applied voltages between 300 and 400 kV and the impedance is around 15 Ohms during the process when microwave radiation is generated. The microwave pulse duration is for most cases between 100 to 200 ns. For the experiments described in this paper focus has been on different cathode geometries and on different anode meshes. Results that are given include microwave power, spectral content and mode characteristics. In an attempt to better understand and explain the experimental results particle-in-cell simulations have been carried out in MAGIC.
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不同阴极几何形状轴向促动器的实验研究
本文介绍了轴向抽提式轴向旋流器的数值研究和实验结果。微波源由马克思发生器驱动,不包括两个子系统之间的任何类型的脉冲形成装置。这种特殊安排的主要原因是最终目标是建立一个紧凑和强大的高功率微波系统。缺点通常是微波源的效率较低。在产生微波辐射的过程中,促动器的工作电压在300 ~ 400kv之间,阻抗在15欧姆左右。在大多数情况下,微波脉冲持续时间在100到200纳秒之间。对于本文所描述的实验,重点是不同的阴极几何形状和不同的阳极网格。给出的结果包括微波功率、光谱含量和模态特性。为了更好地理解和解释实验结果,在MAGIC中进行了颗粒胞内模拟。
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