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镍纳米孔阵列中的光局域和磁光增强。

Light Localization and Magneto-Optic Enhancement in Ni Antidot Arrays.

机构信息

Fachbereich Physik and Forschungszentrum OPTIMAS, Technische Universität Kaiserslautern , 67663 Kaiserslautern, Germany.

Graduate School of Excellence Materials Science in Mainz , Gottlieb-Daimler-Strasse 47, 67663 Kaiserslautern, Germany.

出版信息

Nano Lett. 2016 Apr 13;16(4):2432-8. doi: 10.1021/acs.nanolett.5b05279. Epub 2016 Mar 31.

Abstract

We reveal an explicit strategy to design the magneto-optic response of a magneto-plasmonic crystal by correlating near- and far-fields effects. We use photoemission electron microscopy to map the spatial distribution of the electric near-field on a nanopatterned magnetic surface that supports plasmon polaritons. By using different photon energies and polarization states of the incident light we reveal that the electric near-field is either concentrated in spots forming a hexagonal lattice with the same symmetry as the Ni nanopattern or in stripes oriented along the Γ-K direction of the lattice and perpendicular to the polarization direction. We show that the polarization-dependent near-field enhancement on the patterned surface is directly correlated to both the excitation of surface plasmon polaritons on the patterned surface as well as the enhancement of the polar magneto-optical Kerr effect. We obtain a relationship between the size of the enhanced magneto-optical behavior and the polarization and wavelength of optical excitation. The engineering of the magneto-optic response based on the plasmon-induced modification of the optical properties introduces the concept of a magneto-plasmonic meta-structure.

摘要

我们揭示了一种通过关联近场和远场效应来设计磁光响应的显式策略。我们使用光发射电子显微镜来绘制支持等离子体激元的纳米图案磁性表面上的近场电分布。通过使用不同的光子能量和入射光的偏振状态,我们揭示出近场电要么集中在与 Ni 纳米图案具有相同对称性的六边形晶格中的点上,要么集中在沿晶格 Γ-K 方向且垂直于偏振方向的条带上。我们表明,在图案化表面上的偏振相关近场增强与图案化表面上的表面等离子体激元的激发以及极磁光克尔效应的增强直接相关。我们获得了增强的磁光行为与光学激发的偏振和波长之间的关系。基于等离子体诱导的光学性质修饰的磁光响应工程引入了磁等离子体元结构的概念。

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