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首页> 外文期刊>Journal of theoretical and applied physics >Impact of geometry and magneto-optical properties on field enhancement and optical bistability in core–shell nanoparticles
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Impact of geometry and magneto-optical properties on field enhancement and optical bistability in core–shell nanoparticles

机译:几何形状和磁光特性对核-壳纳米粒子中场增强和光学双稳性的影响

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We study the interaction of electromagnetic field with two of the most tunable nanostructure geometries for nanoplasmonics including the magneto-optical nanoshell structure and the spheroidal geometry. We investigate the effect of combining both geometry and magneto-optical properties within the same nanostructure on the field enhancement factor and optical bistability behaviors. Since the coupling between the inner and outer surface plasmons of the nanoshell is stronger for the elongated spheroidal geometry as compared to that for the spherical case, field enhancement in ellipsoid nanoparticles is much more saleintiant. Moreover, the plasmonic field enhancement is four orders of magnitude larger for the spheroidal nanoshells as compared to spherical nanoshells. In addition to the appearance of optical bistability in this system, it is found that the threshold and window of bistability are strongly dependent on magneto-optical properties and geometry of the core–shell nanoparticle.
机译:我们研究了电磁场与纳米等离子体的两个最可调谐的纳米结构几何形状的相互作用,包括磁光纳米壳结构和球形几何形状。我们研究了在相同的纳米结构中结合几何和磁光特性对场增强因子和光学双稳态行为的影响。由于与球形情况相比,对于细长的球形几何体,纳米壳的内表面等离子体激元与外表面等离子体激元之间的耦合更强,因此椭圆形纳米颗粒的场增强作用更加明显。而且,与球形纳米壳相比,球形纳米壳的等离子体场增强大四个数量级。除了在该系统中出现光学双稳态外,还发现双稳态的阈值和窗口在很大程度上取决于磁光性质和核-壳纳米粒子的几何形状。

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