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Finite Conductance Governs the Resonance Transmission of Thin Metal Slits at Microwave Frequencies

机译:有限电导控制微波频率下薄金属狭缝的共振传输

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摘要

Fabry-Perot-like resonant transmission of microwave radiation through a single subwavelength slit in a thick aluminum plate is quantified for a range of slit widths. Surprisingly, and in contrast to previous studies [e.g., Y. Takakura, Phys. Rev. Lett 86, 5601 (2001)], the resonant frequency exhibits a maximum as a function of slit width, decreasing as the slit width is reduced to less than 2% of the incident wavelength. This result accords with a new model based on coupled surface plasmon theory taking into account the finite conductivity, and hence permittivity, of the metal. This is contrary to a common assumption that metals can be treated as infinitely conducting in this regime.
机译:对于狭缝宽度的范围,量化了通过厚铝板中的单个亚波长狭缝的微波辐射的法布里-珀罗式共振传输。令人惊讶的是,与先前的研究形成对比[例如,高仓。(Y. Takakura),物理学Rev.Lett 86,5601(2001)],共振频率呈现出最大的缝隙宽度的函数,随着缝隙宽度减小到小于入射波长的2%而减小。该结果与基于耦合表面等离子体激元理论的新模型相符,该模型考虑了金属的有限电导率以及因此的介电常数。这与通常的假设相反,在这种情况下,金属可以被视为无限导电。

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