论文标题

磁性纳米结构的法拉第效应,具有磁化空间调制

The Faraday effect in magnetoplasmonic nanostructures with spatial modulation of magnetization

论文作者

Borovkova, O. V., Lutsenko, S. V., Sylgacheva, D. A., Kalish, A. N., Belotelov, V. I.

论文摘要

考虑了磁化强度的磁性纳米结构中的磁光法拉第效应。结果表明,在这样的纳米结构中,法拉第效应可以在等离子和波导光学模式激发的光谱范围内体验共振的增强。它均以$ S $和$ p $偏振光的光线发生。这种效果可以用于磁性材料中短自旋波的光谱选择性检测。

The magneto-optical Faraday effect in the magnetoplasmonic nanostructures with nonuniform, periodically modulated spatial distribution of the magnetization is considered. It is shown that in such nanostructures the Faraday effect can experience the resonant enhancement in the spectral range of the plasmonic and waveguide optical modes excitation. It happens both for $s$ and $p$-polarized light. Such an effect can serve for the spectrally selective detection of the short spin waves in the magnetic materials.

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