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Unidirectional light scattering with high efficiency at optical frequencies based on low-loss dielectric nanoantennas

机译:单向高的光散射在光学频率基于效率低损耗介质nanoantennas

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Dielectric nanoparticles offer low optical losses and access to both electric and magnetic Mie resonances. This enables unidirectional scattering along the incident axis of light, owing to the interference between these two resonances. Here we theoretically and experimentally demonstrate that an asymmetric dimer of dielectric nanoparticles can provide unidirectional forward scattering with high efficiency. Theoretical analyses reveal that the dimer configuration can satisfy the first Kerker condition at the resonant peaks of electric and magnetic dipolar modes, therefore showing highly efficient directional forward scattering. The unidirectional forward scattering with high efficiency is confirmed in our experiments using a silicon nanodisk dimer on a transparent substrate. This study will boost the realization of practical applications using low-loss and efficient subwavelength all-dielectric nanoantennas.
机译:电介质纳米颗粒提供较低的光损失电和磁米氏和访问共振。散射光的入射轴,由于这两个之间的干扰共振。实验表明,非对称二聚体的介电纳米颗粒可以提供单向散射高效率。二聚体的配置可以满足第一个Kerker电气和共振峰的条件磁偶极模式,因此表现出高度高效的方向向前散射。单向散射高效率是确认在我们的实验中使用一个透明的硅nanodisk二聚体衬底。使用低损耗和实用的应用程序高效的亚波长all-dielectricnanoantennas .

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