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Massive parallel 3D PIC simulation of negative ion extraction

机译:负离子提取的大规模并行3D PIC模拟

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摘要

The 3D PIC-MCC code ONIX is dedicated to modeling Negative hydrogen/deuterium Ion (NI) extraction and co-extraction of electrons from radio-frequency driven, low pressure plasma sources. It provides valuable insight on the complex phenomena involved in the extraction process. In previous calculations, a mesh size larger than the Debye length was used, implying numerical electron heating. Important steps have been achieved in terms of computation performance and parallelization efficiency allowing successful massive parallel calculations (4096 cores), imperative to resolve the Debye length. In addition, the numerical algorithms have been improved in terms of grid treatment, i.e., the electric field near the complex geometry boundaries (plasma grid) is calculated more accurately. The revised model preserves the full 3D treatment, but can take advantage of a highly refined mesh. ONIX was used to investigate the role of the mesh size, the re-injection scheme for lost particles (extracted or wall absorbed), and the electron thermalization process on the calculated extracted current and plasma characteristics. It is demonstrated that all numerical schemes give the same NI current distribution for extracted ions. Concerning the electrons, the pair-injection technique is found well-adapted to simulate the sheath in front of the plasma grid.
机译:3D PIC-MCC代码ONIX专门用于建模负氢/氘离子(NI)提取和从射频驱动的低压等离子体源中共提取电子。它提供了有关提取过程中涉及的复杂现象的宝贵见解。在先前的计算中,使用的网目尺寸大于Debye长度,这意味着电子会发热。在计算性能和并行化效率方面已经实现了重要的步骤,从而能够成功进行大规模并行计算(4096个核),这是解决Debye长度所必须的。另外,在网格处理方面改进了数值算法,即,更精确地计算了复杂几何边界(等离子网格)附近的电场。修改后的模型保留了完整的3D处理,但可以利用高度精炼的网格。使用ONIX来研究筛孔尺寸,丢失的颗粒(提取的或吸收的壁)的再注入方案以及电子热化过程对计算出的提取电流和等离子体特性的作用。事实证明,所有数值方案都为提取离子提供了相同的NI电流分布。关于电子,发现成对注入技术非常适用于模拟等离子栅前面的鞘层。

著录项

  • 来源
    《Journal of Applied Physics 》 |2017年第10期| 103302.1-103302.11| 共11页
  • 作者单位

    Max-Planck-Institut für Plasmaphysik, Garching, Germany;

    Max-Planck-Institut für Plasmaphysik, Garching, Germany;

    Max-Planck-Institut für Plasmaphysik, Garching, Germany;

    Max-Planck-Institut für Plasmaphysik, Garching, Germany;

    Max-Planck-Institut für Plasmaphysik, Garching, Germany;

    LPGP, Université Paris-Sud, Orsay, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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