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Hongbo SU (苏宏博), Hong LI (李鸿), Yongjie DING (丁永杰), Liqiu WEI (魏立秋), Xu ZHANG (张旭), Chaoying ZHOU (周超英), Daren YU (于达仁). Simulation study on the influence of magnetic field in the near-anode region on anode power deposition of ATON-type Hall thruster[J]. Plasma Science and Technology, 2020, 22(9): 94013-094013. DOI: 10.1088/2058-6272/aba188
Citation: Hongbo SU (苏宏博), Hong LI (李鸿), Yongjie DING (丁永杰), Liqiu WEI (魏立秋), Xu ZHANG (张旭), Chaoying ZHOU (周超英), Daren YU (于达仁). Simulation study on the influence of magnetic field in the near-anode region on anode power deposition of ATON-type Hall thruster[J]. Plasma Science and Technology, 2020, 22(9): 94013-094013. DOI: 10.1088/2058-6272/aba188

Simulation study on the influence of magnetic field in the near-anode region on anode power deposition of ATON-type Hall thruster

  • The highest deposition of power and temperature is always near the cusp of the ATON-type Hall thruster. This shows that when there are electrons gathering at the cusp, the distribution of heat load will be uniform, which will potentially damage the reliability. Therefore, we optimize the magnetic field near the anode. We changed the magnetic field characteristics in the near-anode region with an additional magnetic screen, and performed numerical simulation with particle-in-cell simulation. The simulation results show that the magnetic field of the thruster with the additional magnetic screen can alleviate the over-concentration of power deposition on the anode and reduce the power deposition in the anode by 20%, while ensuring that the overall magnetic field characteristics do not change significantly.
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