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Numerical Simulation of Ion Extraction Through Ion Thruster Optics

机译:通过离子推进器光学系统提取离子的数值模拟

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Based on the particle-in-cell (PIC) method, a two-dimensional numerical scheme was developed to investigate the ion beam extraction phenomena through the ion thruster optics. According to the calculated results, the plasma sheath upstream of the screen grid, the electric field in the calculation domain, and the ion and electron spatial distributions are obtained for different accelerator grid voltages. The results indicate that the accelerator grid voltage affects the plasma sheath upstream of the screen grid significantly. It is found that a moderate accelerator grid voltage results in an ion optical performance better than either a higher or lower voltage, from a point of ion extraction from the discharge chamber and erosion mitigation of the accelerator grid due to the direct ion impingement.
机译:基于细胞内粒子(PIC)方法,开发了一种二维数值方案,以研究通过离子推进器光学器件提取离子束的现象。根据计算结果,获得了针对不同加速器栅极电压的屏栅上游的等离子体鞘层,计算域中的电场以及离子和电子空间分布。结果表明,加速器栅极电压会显着影响屏栅上游的等离子体鞘。从放电室中的离子提取和由于直接离子撞击而减轻的加速器栅极的腐蚀的角度,发现适度的加速器栅极电压导致的离子光学性能优于较高或较低的电压。

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