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Extraordinary optical transmission and enhanced magneto-optical Faraday effects in one-dimensional metallic gratings

机译:一维金属光栅中的非凡光传输和增强的磁光法拉第效应

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摘要

The optical and magneto-optical (MO) properties of two different magneto-optic-plasmonic structures including double-layer and single-layer metallic gratings have been investigated. Numerical simulations based on the extended finite difference time domain method have revealed that, in the two proposed structures, apart from the extraordinary optical transmission effect, there arises high MO Faraday rotation in a broad spectrum spanning visible to near-infrared frequencies. Despite the easy fabrication process, the double-layer grating structure still shows an enhancement in transmittance, Faraday rotation, and figure of merit by two, five, and two times, respectively, compared to the single-layer structure, and this can be further improved by suitably modifying the configuration. The physical mechanisms of the physical phenomena are explained in detail.
机译:已经研究了包括双层和单层金属光栅的两个不同磁极 - 等离子体结构的光学和磁光(MO)性能。基于扩展有限差分时间域方法的数值模拟揭示了,在两个提出的结构中,除了非凡的光学传输效果之外,在近红外频率可见的广谱上产生高莫法拉第旋转。尽管制造过程易于制造,双层光栅结构仍然显示出与单层结构相比分别的透射率,法拉第旋转和功绩的数字的增强,这可以进一步通过适当修改配置来改进。详细解释了物理现象的物理机制。

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