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Broadband unidirectional scattering by magneto-electric core-shell nanoparticles

机译:磁电核壳纳米粒子的宽带单向散射

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摘要

Core-shell nanoparticles have attracted surging interests due to their flexibly tunable resonances and various applications in medical diagnostics, biosensing, nanolasers, and many other fields. The core-shell nanoparticles can support simultaneously both electric and magnetic resonances, and when the resonances are properly engineered, entirely new properties can be achieved. Here we study core-shell nanoparticles that support both electric and artificial magnetic dipolar modes, which are engineered to coincide spectrally with the same strength. We reveal that the interferences of these two resonances result in azimuthally symmetric unidirectional scattering, which can be further improved by arranging the nanoparticles in a chain, with both azimuthal symmetry and vanishing backward scattering preserved over a wide spectral range. We also demonstrate that the vanishing backward scattering is preserved, even for random particle distributions, which can find applications in the fields of nanoantennas, photovoltaic devices, and nanoscale lasers that require backward scattering suppressions.
机译:核-壳型纳米颗粒由于其可灵活调节的共振以及在医学诊断,生物传感,纳米激光和许多其他领域的各种应用而引起了人们的极大兴趣。核-壳纳米粒子可以同时支持电和磁共振,并且当适当地设计了共振时,可以实现全新的性能。在这里,我们研究支持电和人工磁偶极子模式的核-壳纳米粒子,这些粒子被设计为在光谱上具有相同的强度。我们揭示了这两个共振的干扰导致了方位角对称的单向散射,可以通过将纳米粒子排列在一条链中而得到进一步的改善,方位角对称性和消失的向后散射都保留在很宽的光谱范围内。我们还证明,即使对于随机的粒子分布,也可以保留消失的向后散射,这可以在需要抑制向后散射的纳米天线,光伏设备和纳米级激光领域找到应用。

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