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Design Optimization and Experiment of 5-cm ECR Ion Thruster

机译:5厘米ECR离子推进器的设计优化和实验

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A cross magnetic field configuration (CMFC) was selected to design a microwave electron cyclotron resonance (ECR) ion thruster with a chamber diameter of 5 cm. The design was performed using the COMSOL Multiphysics software. Based on the commercially available arc-shaped samarium-cobalt magnet, the balanced optimization of CMFC was achieved at the frequency of 2.45 GHz. In Xe ion extraction discharge excited with the originally selected rod antenna, arcing on its front end was confirmed. The arcing problem was solved by replacing with a circular plate antenna. In terms of Xe ion extraction, 5-cm CMFC ECR ion thruster was shown to be better than its counterparts. COMSOL plasma simulation was used to reproduce two opposite discharge profiles observed in experiments.
机译:选择交叉磁场配置(CMFC)来设计腔室直径为5 cm的微波电子回旋共振(ECR)离子推进器。使用COMSOL Multiphysics软件进行设计。基于市售的弧形mar钴磁体,在2.45 GHz频率下实现了CMFC的平衡优化。在用最初选择的棒状天线激发的Xe离子提取放电中,确认到其前端有电弧。通过更换圆板天线解决了电弧放电问题。在Xe离子提取方面,已证明5厘米CMFC ECR离子推进器比同类产品更好。 COMSOL等离子体模拟用于重现实验中观察到的两个相反的放电曲线。

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