首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Metal-nanoparticle arrays on a magnetic garnet film for tunable plasmon-enhanced Faraday rotation
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Metal-nanoparticle arrays on a magnetic garnet film for tunable plasmon-enhanced Faraday rotation

机译:磁性石榴石薄膜上的金属-纳米粒子阵列,用于可调谐等离子体激元增强的法拉第旋转

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摘要

We developed an extension of the layer-multiple-scattering method to photonic crystals comprising homogeneous layers of magneto-optical materials. The applicability of the method is demonstrated on a specific architecture of a magnetic garnet thin film coated with a square array of silver nanodisks, supported by a silica substrate. It is shown that enhanced Faraday rotation, driven by hybrid particle plasmon-film quasi-guided collective modes, can be achieved within selected regions of frequency, which can be tuned by properly choosing the geometric and material parameters involved. The results are analyzed in conjunction with numerical simulations by the finite-element method and a consistent interpretation of the underlying physics is provided. Our extended layer-multiple-scattering computational methodology provides a versatile framework for fast and accurate full electrodynamic calculations of magneto-optical structures, enabling physical insight. (C) 2016 Optical Society of America
机译:我们开发了将多层散射方法扩展到包含均一磁光材料层的光子晶体的方法。该方法的适用性在磁性石榴石薄膜的特定体系结构上得到了证明,该石榴石薄膜涂有由二氧化硅基底支撑的方形银纳米盘阵列。结果表明,在选定的频率范围内,可以通过杂化粒子等离激元薄膜准引导的集体模式驱动来实现增强的法拉第旋转,可以通过适当选择所涉及的几何和材料参数来对其进行调谐。通过有限元方法结合数值模拟对结果进行了分析,并提供了对基础物理学的一致解释。我们扩展的多层多重散射计算方法论为快速,准确地进行磁光结构的完整电动力学计算提供了通用框架,从而实现了物理洞察力。 (C)2016美国眼镜学会

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