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Investigating the Impact of Microwave Breakdown on the Responses of High-Power Microwave Metamaterials

机译:研究微波击穿对大功率微波超材料的响应的影响

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We investigate the effect of microwave-induced breakdown on the frequency responses of a class of metamaterials composed of planar sub-wavelength periodic structures. When breakdown occurs in such a structure, its frequency response changes based on the nature of the plasma created within its unit cell. We examine how the frequency responses of such periodic structures change as a result of creation of microwave-induced discharges within their unit cells. To do this, we examine single-layer metasurfaces composed of miniature LC resonators arranged in a 2-D periodic lattice. These metasurfaces are engineered to be opaque at microwave frequencies when operated at low power levels but can be made transparent if a localized discharge is created within the LC resonators. By measuring their transmission and reflection coefficients under high-power excitation in different conditions, the impact of breakdown on the frequency responses of these devices is determined. Several prototypes of such structures are examined both theoretically and experimentally. It is demonstrated that when breakdown occurs in air and at atmospheric pressure levels, the responses of such periodic structures can be predicted with a reasonable degree of accuracy. Additionally, when the unit cell of the metasurface is composed of two different resonators, breakdown is always observed to occur in both resonators despite their different topologies and local field enhancement factors. In such structures, the discharge in one resonator appears to be mediated by the one in the other.
机译:我们研究了微波引起的击穿对由平面亚波长周期性结构组成的一类超材料的频率响应的影响。当在这种结构中发生击穿时,其频率响应将基于在其晶胞内产生的等离子体的性质而变化。我们研究了这种周期性结构的频率响应如何由于在其晶胞内产生微波感应放电而改变。为此,我们检查了由以二维周期点阵排列的微型LC谐振器组成的单层超表面。当在低功率水平下操作时,这些超颖表面被设计为在微波频率下不透明,但如果在LC谐振器内产生局部放电,则可以使其透明。通过在不同条件下的高功率激励下测量其透射系数和反射系数,可以确定击穿对这些器件的频率响应的影响。在理论上和实验上都研究了这种结构的几个原型。已经证明,当在空气中和在大气压力水平下发生击穿时,可以以合理的准确度预测这种周期性结构的响应。另外,当超颖表面的晶胞由两个不同的谐振器组成时,尽管两个谐振器具有不同的拓扑结构和局部场增强因子,但总会观察到击穿现象。在这样的结构中,一个谐振器中的放电似乎是由另一个谐振器介导的。

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