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Optically isotropic responses induced by discrete rotational symmetry of nanoparticle clusters

机译:光学各向同性离散引起的反应纳米粒子的旋转对称集群

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摘要

Fostered by the recent progress of the fields of plasmonics and metamaterials, the seminal topic of light scattering by clusters of nanoparticles is attracting enormous renewed interest gaining more attention than ever before. Related studies have not only found various new applications in different branches of physics and chemistry, but also spread rapidly into other fields such as biology and medicine. Despite the significant achievements, there still exists unsolved but vitally important challenges of how to obtain robust polarisation-invariant responses of different types of scattering systems. In this paper, we demonstrate polarisation-independent responses of any scattering system with a rotational symmetry with respect to an axis parallel to the propagation direction of the incident wave. We demonstrate that the optical responses such as extinction, scattering, and absorption, can be made independent of the polarisation of the incident wave for all wavelengths. Such polarisation-independent responses are proven to be a robust and generic feature that is purely due to the rotational symmetry of the whole structure. We anticipate our finding will play a significant role in various applications involving light scattering such as sensing, nanoantennas, optical switches, and photovoltaic devices.
机译:领域的最新进展等离子和超材料,重要的话题集群的纳米粒子的光散射吸引巨大的兴趣获得吗比以往更多的关注。不仅找到了各种新的应用程序不同的物理和化学的分支,但是也迅速蔓延到其他领域,如生物学和医学。成就,但仍存在尚未解决的如何获得挑战至关重要健壮的polarisation-invariant反应的不同类型的散射系统。篇文章中,我们展示polarisation-independent任何散射系统的响应对一个轴旋转对称的传播方向平行入射波。反应如灭绝、散射和吸收,可以独立的入射波的极化波长。反应被证明是一个健壮的和通用的功能,纯粹是由于旋转对称的结构。我们的发现将发挥重要作用涉及光散射的各种应用程序如遥感、nanoantennas、光学开关、和光伏设备。

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