Cathode position effects on microwave discharge cusped field thruster

被引:0
|
作者
曾明 [1 ]
刘辉 [1 ]
陈野 [1 ]
于达仁 [1 ]
黄洪雁 [1 ]
机构
[1] Lab of Plasma Propulsion, Harbin Institute of Technology
基金
中国国家自然科学基金; 国家重点研发计划;
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D O I
暂无
中图分类号
V439.4 [];
学科分类号
摘要
The microwave discharge cusped field thruster is a novel concept of electric micropropulsion device, which operates μN level thrust in low mass flow rate conditions, making use of a coaxial transmission line resonator. With its advantages of low thrust noise and high thrust resolution over a wide range of thrust, the thruster has emerged as a candidate thruster for the space-borne gravitational wave detection mission. The cathode effects commonly exist in many kinds of electric propulsion, and they are typically significant in micropropulsions. In order to find out the cathode position effects on a microwave discharge cusped field thruster, a thermionic cathode is mounted on a cross-slider for coupling. Under different cathode positions, the plume is analyzed by a Faraday probe and a retarding potential analyzer to analyze the performance and discharge characteristics. The results show that the magnetic mirror effect leads to significant degradation of anode current and an increase in low-energy ion ratio as the cathode moves away from the thruster exit. The electron conduction route also significantly impacts anode current efficiency,related to the cathode-exit distance and the thruster magnetic topology.
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页码:136 / 143
页数:8
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