论文标题

电磁二元性保护非磁性颗粒的散射特性

Electromagnetic Duality Protected Scattering Properties of Nonmagnetic Particles

论文作者

Yang, Qingdong, Chen, Weijin, Chen, Yuntian, Liu, Wei

论文摘要

非磁性结构的光学性质最近吸引了人工化诱导的磁反应。在这里,我们从电磁二元性的角度和离散的几何旋转的角度对非磁性颗粒的散射特性进行了对称性研究。对于任意散射配置,我们揭示了远场散射模式在二元转换下是不变的,这特别意味着具有随机粒子分布的自偶群的散射模式与极化无关。基于这一启示,进一步发现,对于任何入射波的极化,组合偶(n折)旋转对称性的散射体也显示出n倍旋转的旋转对称散射模式,其向后分量为零,从而使第一个kerker条件自动满足。我们使用偶联偶极理论和完整的数值模拟来证明这些散射特性,仅基于支持光学诱导的偶性共振的非磁性核心壳颗粒。这些证实的散射特性完全由基本的对称原理诱导,因此可以在任何非对称性破坏扰动中生存,这些扰动可能会在需要固有稳健功能的各种光学设备中找到应用。

Optical properties of nonmagnetic structures that support artificial optically-induced magnetic responses have recently attracted surging interest. Here we conduct symmetry-dictated investigations into scattering properties of nonmagnetic particles from perspectives of electromagnetic duality with discrete geometric rotations. For arbitrary scattering configurations, we reveal that far-field scattering patterns are invariant under duality transformations, which in particular means that scattering patterns of self-dual clusters with random particle distributions are polarization independent. Based on this revelation, it is further discovered that scattering bodies of combined duality-(n-fold) rotation symmetry, for any polarizations of incident waves, exhibit also n-fold rotationally symmetric scattering patterns with zero backward components, satisfying the first Kerker condition automatically. We employ both coupled dipole theory and full numerical simulations to demonstrate those scattering properties, solely based upon nonmagnetic core-shell particles that support optically-induced dipolar resonances. Those substantiated scattering properties are fully induced by fundamental symmetry principles, and thus can survive any non-symmetry-breaking perturbations, which may find applications in a wide range of optical devices that require intrinsically robust functionalities.

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