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Computer simulation of electromagnetic transmission through perfectly conducting plate with subwavelength apertures

机译:具有亚波长孔的完美导电板电磁传输的计算机模拟

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The study of electromagnetic transmission through a metallic plate with apertures has been investigated for a long time. However, it is one of the important current issues in optics. The small aperture of a metal-coated probe makes possible high resolution beyond the refraction limit (Ohtsu, M. and Hori, H., 'Near-field Nano-optics: From Basic Principles to Nano-Fabrication and Nano-Photonics', Kluwer Academic Plenum Publishers, 1999). The extraordinary enhancement of the optical transmission through subwavelength apertures in metal films has been observed (Ebbesen, T.W. et al., Nature, vol.391, p.667-9, 1998). We perform computer simulations of the electromagnetic transmission through a perfectly conducting plate, which has infinite area, with subwavelength apertures. The surface integral equation method is employed to perform the computer simulation. The apertures which are parallel to the incident electric field have more influence on the field distributions than the apertures which are perpendicular to the incident electric field.
机译:长期以来,已经研究了通过具有孔的金属板的电磁传输的研究。然而,这是当前光学领域的重要问题之一。金属镀膜探针的小孔径使得可以实现超出折射极限的高分辨率(Ohtsu,M.和Hori,H.,“近场纳米光学:从基本原理到纳米制造和纳米光子学”,Kluwer全体学术出版社,1999年)。已经观察到通过金属膜中亚波长孔的光传输的非凡提高(Ebbesen,T.W。等人,Nature,vol.391,p.667-9,1998)。我们通过具有无限波长区域和亚波长孔的完美导电板进行电磁传输的计算机模拟。采用表面积分方程法进行计算机仿真。与垂直于入射电场的孔相比,平行于入射电场的孔对电场分布的影响更大。

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