一种新型微波等离子体源的设计与优化

P. Veronesi, C. Leonelli, G. Poli, M. Garuti
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引用次数: 3

摘要

本工作的目的是设计一种电场强度周向均匀分布的新型紧凑微波等离子体源。利用电磁场仿真软件结合实验设计技术,从能量效率和场均匀性两个方面对源的几何形状进行了设计和优化。基本假设是等离子体可以用等效介电负荷来描述。模拟了两个相对简单的微波波导等离子体源,研究了阻抗匹配器件对整个系统能量效率的影响。基于WR340波导的几何形状组装了一个微波波导等离子体源,并对模型进行了实验验证。一种全新的紧凑型等离子体源,它是一个环形波导和一个创新的“自适应”耦合槽,已经被数值模拟,设计和建造。初步的测试证实了一个足够均匀的五瓣电场分布的存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The design and optimization of a new microwave plasma source by numerical simulation
The aim of the work is to design a new compact microwave plasma source with a homogeneous circumferential distribution of the electric field intensity. The software for electromagnetic field simulation combined with design-of-experiments techniques was used to design and optimize the source geometry in terms of energy efficiency and field homogeneity. The basic assumption is that plasma can be described by an equivalent dielectric load. Two relatively simple microwave waveguide plasma sources have been simulated to study the effect of impedance-matching devices on the energy efficiency of the whole system. A microwave waveguide plasma source based on the WR340 waveguide geometry has been assembled to validate the model experimentally. A completely new compact plasma source, which is a toroidal waveguide and an innovative ‘self-adapting’ coupling slot, has been numerically simulated, designed and built. Preliminary tests confirmed the existence of a sufficiently homogeneous five-lobe distribution of the electric field.
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Plasma Devices and Operations
Plasma Devices and Operations 物理-核科学技术
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