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首页> 外文期刊>Applied Physics Letters >Surface-topography-induced enhanced transmission and directivity of microwave radiation through a subwavelength circular metal aperture
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Surface-topography-induced enhanced transmission and directivity of microwave radiation through a subwavelength circular metal aperture

机译:表面形貌诱导的通过亚波长圆形金属孔的微波辐射的透射和方向性增强

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摘要

Strongly enhanced transmission of microwave radiation (λ_(0)~5 mm) is observed through a single subwavelength circular aperture of diameter d=2.5 mm in a metallic plate. The phenomenon is caused by resonant excitation of electromagnetic surface waves supported by four concentric grooves surrounding the aperture on the illuminated side of the sample. It is also shown that similar surface patterning on the output face of the sample results in very strong angular confinement (directivity) of the transmitted beam. A finite element code is used to investigate the electromagnetic fields on both the illuminated and the exit side of the structure, the predictions from which show excellent agreement with the experimental results.
机译:通过金属板上直径为d = 2.5 mm的单个亚波长圆形孔径观察到微波辐射(λ_(0)〜5 mm)的透射增强。该现象是由电磁表面波的共振激发所引起的,该电磁表面波由围绕样品被照射侧的孔的四个同心凹槽支撑。还显示出,样品输出面上类似的表面图案会导致透射光束的角度限制非常强(方向性)。有限元代码用于研究结构的照明侧和出口侧的电磁场,从中得出的预测与实验结果非常吻合。

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