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首页> 外文期刊>Nanotechnology >Magneto-optical effects in hyperbolic metamaterials based on ordered arrays of bisegmented gold/nickel nanorods
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Magneto-optical effects in hyperbolic metamaterials based on ordered arrays of bisegmented gold/nickel nanorods

机译:基于双晶金/镍纳米棒的有序阵列的双曲形超材料中的磁光效应

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摘要

Hyperbolic metamaterials (HMM) based on multilayered metal/dielectric films or ordered arrays of metal nanorods in a dielectric matrix are extremely attractive optical materials for manipulating over the parameters of the light flow. One of the most promising tools for tuning the optical properties of metamaterials in situ is the application of an external magnetic field. However, for the case of HMM based on the ordered arrays of magneto-plasmonic nanostructures, this effect has not been clearly demonstrated until now. In this paper, we present the results of synthesis of HMM based on the highly-ordered arrays of bisegmented Au/Ni nanorods in porous anodic alumina templates and a detailed study of their optical and magneto-optical properties. Distinct enhancement of the magneto-optical (MO) effects along with their sign reversal is observed in the spectral vicinity of epsilon-near-zero and epsilon-near-pole spectral regions. The underlying mechanism is the amplification of the MO polarization plane rotation initiated by Ni segments followed by the light propagation in a strongly birefringent HMM. This stays in agreement with the phenomenological description and relevant numerical calculations.
机译:基于多层金属/介电薄膜或介电基体中有序排列的金属纳米棒的双曲超材料(HMM)是一种非常有吸引力的光学材料,用于控制光流参数。在原位调节超材料光学性质的最有前途的工具之一是外加磁场的应用。然而,对于基于磁等离子体纳米结构有序阵列的HMM,这种效应直到现在还没有得到清楚的证明。在本文中,我们介绍了基于多孔阳极氧化铝模板中高度有序的双段Au/Ni纳米棒阵列合成HMM的结果,并详细研究了它们的光学和磁光性质。在epsilon近零光谱区和epsilon近极点光谱区的光谱附近观察到磁光效应的明显增强及其符号反转。其基本机制是由Ni段引发的MO偏振面旋转的放大,随后光在强双折射HMM中传播。这与唯象描述和相关数值计算一致。

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