【2h】

Strong coupling in hybrid metal–dielectric nanoresonators

机译:混合金属-电介质纳米谐振器中的强耦合

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摘要

We study resonant photonic–plasmonic coupling between a gold dipole nanoantenna and a silicon nanodisc supporting electric and magnetic dipolar Mie-type resonances. Specifically, we consider two different cases for the mode structure of the silicon nanodisc, namely spectrally separate and spectrally matching electric and magnetic dipolar Mie-type resonances. In the latter case, the dielectric nanoparticle scatters the far fields of a unidirectional Huygens’ source. Our results reveal an anticrossing of the plasmonic dipole resonance and the magnetic Mie-type dipole resonance of the silicon nanodisc, accompanied by a clear signature of photonic–plasmonic mode hybridization in the corresponding mode profiles. These characteristics show that strong coupling is established between the two different resonant systems in the hybrid nanostructure. Furthermore, our results demonstrate that in comparison with purely metallic or dielectric nanostructures, hybrid metal–dielectric nanoresonators offer higher flexibility in tailoring the fractions of light which are transmitted, absorbed and reflected by the nanostructure over a broad range of parameters without changing its material composition. As a special case, highly asymmetric reflection and absorption properties can be achieved.This article is part of the themed issue ‘New horizons for nanophotonics’.
机译:我们研究了金偶极纳米天线和支持电和磁偶极Mie型共振的硅纳米盘之间的共振光子-等离子体耦合。具体地,我们考虑硅纳米盘的模式结构的两种不同情况,即在光谱上分离并且在光谱上匹配电和磁偶极Mie型共振。在后一种情况下,电介质纳米粒子会散射单向惠更斯源的远场。我们的研究结果揭示了硅纳米盘的等离子体偶极子共振和磁性Mie型偶极子共振的反交叉,在相应的模式轮廓中伴随着清晰的光子-等离子体模式混合信号。这些特征表明,在杂化纳米结构中的两个不同的共振系统之间建立了强耦合。此外,我们的结果表明,与纯金属或介电纳米结构相比,杂化金属-介电纳米谐振器在定制各种结构参数下纳米结构所传输,吸收和反射的光份额时具有更高的灵活性,而无需改变其材料成分。作为特殊情况,可以实现高度不对称的反射和吸收特性。本文是主题为“纳米光子学的新视野”的一部分。

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