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首页> 外文期刊>Journal of optics >Polarization effects in metallic plates perforated with periodic arrays of subwavelength circular holes
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Polarization effects in metallic plates perforated with periodic arrays of subwavelength circular holes

机译:用周伏圆孔的周期阵列穿孔的金属板中的偏振效应

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摘要

The enhanced transmission phenomenon (ET) discovered by Ebbesen et al has recently been a topic of the intensive research, leading to such a branch of research as fishnet metamaterials. An application of the metamaterials is polarization sensitive devices. Polarization sensitivity for ET frequency selective structures, as for classical ones, is usually associated with the hole shapes being polarization sensitive. This paper discusses a new phenomenon of polarization sensitive extraordinary transmission through a thick screen perforated with polarization independent subwavelength circular holes. The possibility to control the polarization state of the waves transmitted through the screen by manipulation periodical cell dimensions only is shown, while hole shapes are polarization independent. A linear plane wave can be rotated through an arbitrary angle, and converted to a circular or elliptical one, when passing through the screen in the vicinity of Floquet-wave grazing points. Therefore, one can realize a simple and compact polarization device at the expense of reducing bandwidth. The origin of the phenomenon is in a plane wave coupling with different types of symmetry eigenmodes leading to polarization sensitive enhanced transmission. When an incident plane wave couples to orthogonal symmetrical and antisymmetrical eigenmodes with close eigenfrequencies, the screen can behave like a half-wave plate. For the case of several closely spaced eigenmodes jointly contributing to transmitted wave, the effect of enhanced polarization conversion can be observed for the screen to behave like a quarter-wave plate.
机译:EBBESEN等人发现的增强传播现象(ET)最近是一项集中研究的主题,导致这种研究分支为鱼网超材料。超材料的应用是偏振敏感器件。对于ET频率选择性结构的偏振敏感性,如经典的,通常与孔形状相关联偏振敏感。本文讨论了通过具有偏振独立亚波长圆孔穿孔的厚屏来探讨了偏振敏感的偏振敏感的新现象。仅示出了通过操作周期性小区尺寸来控制通过屏幕传输的波的偏振状态的可能性,而孔形状是独立的偏振。线性平面波可以通过任意角度旋转,并且当通过浮动波放牧点附近的屏幕时转换成圆形或椭圆形。因此,可以以减少带宽来实现简单而紧凑的偏振装置。该现象的起源是具有不同类型的对称性特征模码的平面波耦合,导致偏振敏感增强传输。当入射平面波耦合到具有近端频率的正交对称和防逆素幅度时,屏幕可以表现为半波片。对于具有联合透射波的几个紧密间隔的特征模点的情况下,可以观察到增强偏振转换的效果,以便屏幕表现得像四分之一波片。

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