Chen Yuntian

·Paper Publications

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Scattering invariance for arbitrary polarizations protected by joint spatial-duality symmetries.
Release time:2021-09-02  Hits:

Indexed by: Journal paper

Journal: Physical Review B

Affiliation of Author(s): 光电学院,国家光电研究中心

Place of Publication: 美国

Discipline: 物理学

Funded by: 自然科学基金

Document Type: J

Volume: 102

Issue: 15

Page Number: 155427

Key Words:

DOI number: 10.1103/PhysRevB.102.155427

Date of Publication: 2020-10-13

Teaching and Research Group: c716

Abstract: We reveal how to exploit joint spatial-electromagnetic duality symmetries to obtain invariant scattering properties (including extinction, scattering, absorption) of self-dual scattering systems for incident waves of arbitrary polarizations. The electromagnetic duality ensures the helicity preservation along all scattering directions and thus intrinsically eliminates the interferences between the two scattering channels originating from the circularly polarized components of incident waves. This absence of interference directly secures invariant scattering properties for all polarizations located on the same latitude circle of the Poincaré sphere, which are characterized by polarization ellipses of the same eccentricity and handedness. Further incorporations of mirror and/or inversion symmetries would lead to such invariance throughout the whole Poincaré sphere, guaranteeing invariant scattering properties for all polarizations. Simultaneous exploitations of composite symmetries of different natures render an extra dimension of freedom for scattering manipulations, offering new insights for both fundamental explorations and optical device engineering related to symmetry-dictated light-matter interactions.

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Links to published journals: https://doi.org/10.1103/PhysRevB.102.155427