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Tutorial: Modeling of the extraction and acceleration of negative ions from plasma sources using particle-based methods

机译:教程:使用基于粒子的方法对等离子体源中的负离子提取和加速进行建模

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In this Tutorial, we consider plasma sources with applications to fusion devices and high energy accelerators. These ion sources typically produce negative ions from hydrogen-isotope gases, which are extracted through one or multiple apertures and accelerated to high kinetic energies. Next, they are either double stripped of two electrons to form positive ions used as precursors in accelerator devices or neutralized to produce a neutral beam injected in tokamak reactors. Contrary to the working conditions of most ion sources where volume production prevails, the mechanism of negative ion production by dissociative electron attachment on vibrationally excited molecules inside the plasma volume of fusion-type hydrogen-fueled high power discharges is mostly balanced by their destruction by detachment before being extracted rendering this means of producing negative ions rather inefficient. Surface production through the transfer of electrons from low work function metallic materials to the impacting atoms is the alternative solution to fulfill the requirements for the applications concerned. Negative ions are produced close to the aperture from which they are extracted. As a result, the analysis and understanding of the extraction mechanisms through experimental diagnostics is rather difficult due to the lack of accessibility and can only give a partial view. In addition, most of the experimental work is focused on the validation of requirements for the applications and not to the investigation of the fundamental processes that take place inside these types of sources. This Tutorial is focused on the description and understanding of the physical mechanisms behind the extraction and acceleration of negative ions from hydrogen plasma sources through modeling methods. We describe the numerical techniques of particle-based methods with a specific emphasis on particle-in-cell Monte Carlo collision algorithms. An analysis of the physical processes involved in driving the negative ions from the plasma source, across the apertures and inside the accelerator as reported in the literature, is presented in detail. This Tutorial concludes with additional and future works to be addressed in the coming years.
机译:在本教程中,我们研究了应用于聚变装置和高能加速器的等离子体源。这些离子源通常从氢同位素气体中产生负离子,这些负离子通过一个或多个孔提取并加速到高动能。接下来,它们要么被双剥离两个电子以形成正离子,用作加速器装置中的前体,要么被中和以产生注入托卡马克反应堆的中性束。与大多数离子源以体积生产为主的工作条件相反,聚变型氢燃料高功率放电的等离子体体积内的振动激发分子上通过解离电子附着产生负离子的机理主要通过它们在提取前通过分离破坏来平衡,使这种产生负离子的方法效率相当低下。通过将电子从低功函数金属材料转移到撞击原子来产生表面,是满足相关应用要求的替代解决方案。负离子在提取负离子的孔径附近产生。因此,由于缺乏可及性,通过实验诊断对提取机制的分析和理解相当困难,只能给出部分视图。此外,大多数实验工作都集中在应用程序需求的验证上,而不是对这些类型源中发生的基本过程的调查。本教程重点描述和理解通过建模方法从氢等离子体源中提取和加速负离子背后的物理机制。我们描述了基于粒子的方法的数值技术,特别强调了粒子在细胞中的蒙特卡罗碰撞算法。如文献中报道的那样,详细分析了从等离子体源、穿过孔径和加速器内部驱动负离子所涉及的物理过程。本教程最后介绍了未来几年要解决的其他工作和未来工作。

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