高功率微波与低温等离子体在气体放电管负载SIW结构中的相互作用

Z. V. Missen, A. Semnani, E. Viveiros, D. Peroulis
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引用次数: 2

摘要

本文研究了高功率微波与低温等离子体之间的测量和模拟相互作用。在所制备的具有共面波导端部的l波段衬底集成波导中,通过波导插入气体放电管作为等离子电池。介绍了等离子体反射和吸收功率的测量,并讨论了它们的含义。这些结果为建立高功率微波与低温等离子体相互作用的完整模型奠定了基础。这种模型可以改进等离子体可调谐射频器件的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interaction of high-power microwaves with low-temperature plasma in a gas-discharge-tube-loaded SIW structure
Measured and simulated interactions between high-power microwaves and low-temperature plasma are investigated in this work. In a fabricated L-band substrate integrated waveguide with coplanar waveguide ends, a gas discharge tube is inserted through the waveguide as a plasma cell. Measurements of reflected and absorbed powers by the plasma are presented and their implications discussed. These results provide a groundwork for the development of a complete model for the interaction between high-power microwaves and low-temperature plasmas. Such a model can improve designs for plasma-enabled tunable RF devices.
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