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堆叠互补等离子体晶体平板中的亚波长电磁动力学

Subwavelength electromagnetic dynamics in stacked complementary plasmonic crystal slabs.

作者信息

Iwanaga Masanobu

机构信息

National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba 305-0044, Japan.

出版信息

Opt Express. 2010 Jul 19;18(15):15389-98. doi: 10.1364/OE.18.015389.

Abstract

Resonant electromagnetic fields in stacked complementary plasmonic crystal slabs (sc-PlCSs) are numerically explored in subwavelength dimensions. It is found that the local plasmon resonances in the sc-PlCSs are composite states of locally enhanced electric and magnetic fields. Two sc-PlCSs are analyzed in this paper and it is shown that each sc-PlCS realizes a resonant electromagnetic state suggested by one of Maxwell equations. It is moreover clarified that the local plasmons open efficient paths of Poynting flux, those result in high-contrast polarized transmission.

摘要

在亚波长尺度上对堆叠互补等离子体晶体平板(sc-PlCSs)中的共振电磁场进行了数值研究。研究发现,sc-PlCSs中的局部等离子体共振是局部增强电场和磁场的复合态。本文分析了两个sc-PlCSs,结果表明每个sc-PlCS都实现了由麦克斯韦方程之一所暗示的共振电磁态。此外还阐明,局部等离子体激元开辟了能流的有效路径,从而导致高对比度的偏振传输。

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