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Experimental investigation of an l band all cavity axial extraction relativistic magnetron

机译:L频段轴向提取相对磁控磁控磁阻的实验研究

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Experimental results of an L band all cavity axial extraction relativistic magnetron (RM) working at 1.57 GHz is presented. In this 6-cavity RM configuration, microwave from two adjacent cavities is coupled into an axially oriented coaxial sector waveguide through radial slots on the cavities. This configuration is more compact because only three sector waveguides are added outside the magnetron cavity without increasing the radial dimension significantly. Simulation results reveal that this tube could generate a microwave power of 700 MW at the frequency of 1.57 GHz, corresponding to a power conversion efficiency of 50% when employing an electron beam of 350 kV and 4.0 kA. This tube is tested on a compact Marx generator in our lab. In experiment, this tube could generate a microwave power of over 500 MW at 1.57 GHz when employing guiding magnetic field of 0.22 T and input beam voltage of 345 kV and current of 4.8 kA, with a corresponding efficiency of about 30%. Experimental results reveal that this tube is a preferred configuration for a compact relativistic magnetron with relatively high power conversion efficiency.
机译:提出了在1.57GHz工作的L频段所有腔轴向提取相对论磁控管(RM)的实验结果。在该6腔RM配置中,来自两个相邻空腔的微波通过空腔上的径向槽通过径向槽耦合到轴向定向的同轴扇形波导中。这种配置更紧凑,因为在磁控腔外只添加了三个扇形波导,而不显着增加径向尺寸。仿真结果表明,该管可以以1.57GHz的频率产生700 MW的微波功率,当采用350kV和4.0ka的电子束时,对应于50±%的功率转换效率。该管在我们实验室的紧凑Marx发电机上进行了测试。在实验中,当采用0.22 t的引导磁场和345kV的输入光束电压和4.8ka的电流的引导磁场时,该管可以在1.57 GHz上产生超过500mW的微波功率。和4.8ka的电流,相应的效率约为30℃。实验结果表明,该管是具有相对高功率转换效率的紧凑相对磁控管的优选配置。

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