面向复杂求解域的高效粒子网格/蒙特卡罗模型与阳极层离子源仿真

Translated title of the contribution: High-efficient particle-in-cell/Monte Carlo model for complex solution domain andsimulation of anode layer ion source

崔岁寒, 左伟, 黄健, 李熙腾, 陈秋皓, 郭宇翔, 杨超, 吴忠灿, 马正永, 傅劲裕, 田修波, 朱剑豪, 吴忠振*

*Corresponding author for this work

    Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

    2 Citations (Scopus)

    Abstract

    Plasma simulation is important in studying the plasma discharge systematically, especially the anode layer ion source which has the complex geometrical characteristics of the discharge structure. However, owing to the complex solution domain formed by the geometric profile of the anode and cathode, the traditional simulation models show extremely small computational efficiency and poor convergence. This work presents a separate simulation for the ion source structure and the plasma discharge, separately, where the cathode geometric parameters (including the size, the shape and the relative position of the inner and outer cathodes) are simplified into two magnetic mirror parameters (the magnetic mirror ratio Rm and the magnetic induction intensity in the center of the magnetic mirror B0), and then a high-efficient particle-in-cell/Monte Carlo collision (PIC/MCC) model is established to improve the computational efficiency and stability of the plasma simulation later. As a result, the convergence time of the plasma simulation is shortened significantly from 1.00 μs to 0.45 μs, and by which the influences of the geometrical characteristics of the discharge structure on the plasma properties are systematically studied. The simulation results reveal that magnetic mirror with Rm = 2.50 and B0 = 36 mT can best confine the plasma in the central area between the inner cathode and outer cathode. When the discharge center of the plasmacoincides with the magnetic mirror center, the anode layer ion source presents both high density output of ion beam current and significantly reduced cathode etching, suggesting that the best balance is obtained between the output and cathode etching.
    Translated title of the contributionHigh-efficient particle-in-cell/Monte Carlo model for complex solution domain andsimulation of anode layer ion source
    Original languageChinese (Simplified)
    Article number085202
    Journal物理学报
    Volume72
    Issue number8
    Online published14 Feb 2023
    DOIs
    Publication statusPublished - 20 Apr 2023

    Research Keywords

    • 等离子体仿真
    • 阳极层离子源
    • 放电结构
    • 等离子体特性
    • plasma simulation
    • anode layer ion source
    • discharge structure
    • plasma properties

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