Polarization-Independent Zero Directional Scattering Without Geometric Symmetries

Fuente: arXiv
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Main Authors: Wen, Chunchao, Qi, Zhichun, Zhang, Jianfa, Qin, Shiqiao, Zhu, Zhihong, Liu, Wei
Format: Preprint
Published: 2025
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author Wen, Chunchao
Qi, Zhichun
Zhang, Jianfa
Qin, Shiqiao
Zhu, Zhihong
Liu, Wei
author_facet Wen, Chunchao
Qi, Zhichun
Zhang, Jianfa
Qin, Shiqiao
Zhu, Zhihong
Liu, Wei
contents As the characteristic feature of generalized Kerker effect in Mie theory, directional scattering elimination has been playing a pivotal role in nanophotonics and many other photonic disciplines, such as singular optics and topological photonics. Generally, zero directional scattering can be obtained only for a specific incident polarization, and to make it fully independent of arbitrary polarizations would require scatterers that exhibit geometric (\textit{e.g.} mirror) symmetries. Here we revisit the generalized Kerker effect and directional scattering elimination from the perspective of not the conventional electromagnetic multipoles, but rather quasi-normal modes supported by non-Hermitian systems. We reveal how to obtain zero directional scattering that is independent of arbitrary incident polarizations, even for scattering structures that do not exhibit the required geometric symmetries. Such geometric symmetry-free and polarization-independent responses are made accessible through a synchronous exploitation of electromagnetic reciprocity and geometric phase. Our discovery can stimulate fundamental explorations and practical applications in not only photonics, but also many other wave physics branches where scattering and geometric phase are pervasive.
format Preprint
id arxiv_https___arxiv_org_abs_2505_21834
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Polarization-Independent Zero Directional Scattering Without Geometric Symmetries
Wen, Chunchao
Qi, Zhichun
Zhang, Jianfa
Qin, Shiqiao
Zhu, Zhihong
Liu, Wei
Optics
As the characteristic feature of generalized Kerker effect in Mie theory, directional scattering elimination has been playing a pivotal role in nanophotonics and many other photonic disciplines, such as singular optics and topological photonics. Generally, zero directional scattering can be obtained only for a specific incident polarization, and to make it fully independent of arbitrary polarizations would require scatterers that exhibit geometric (\textit{e.g.} mirror) symmetries. Here we revisit the generalized Kerker effect and directional scattering elimination from the perspective of not the conventional electromagnetic multipoles, but rather quasi-normal modes supported by non-Hermitian systems. We reveal how to obtain zero directional scattering that is independent of arbitrary incident polarizations, even for scattering structures that do not exhibit the required geometric symmetries. Such geometric symmetry-free and polarization-independent responses are made accessible through a synchronous exploitation of electromagnetic reciprocity and geometric phase. Our discovery can stimulate fundamental explorations and practical applications in not only photonics, but also many other wave physics branches where scattering and geometric phase are pervasive.
title Polarization-Independent Zero Directional Scattering Without Geometric Symmetries
topic Optics
url https://arxiv.org/abs/2505.21834