Affiliation:
1. Xi’an Research Institute of High Technology
Abstract
A single-double-band
switchable circular polarization filter based on surface plasmon
resonance exhibits significant potential for applications in fields
such as communication and sensing due to its adjustable, low-cost, and
easy integration features. In this study, we propose a bi-layer rod
nanostructure and use FEM simulation to study the transmission spectra
of the structure. The results demonstrate that the structure exhibits
both single- and double-band circular polarization filtering effects,
which can be switched by varying geometric parameters such as the
distance between the two layers and the width of nanorods.
Furthermore, the filtering effects of both single- and double-band are
highly dependent on the length of the nanorods, with average
extinction rates reaching 486 and 2020/129, respectively; the
operating bandwidths (defined as extinction ratio >10) can reach 170 nm and
35 nm/70 nm, respectively. The underlying physical
mechanisms are clarified by analyzing the electric dipole, magnetic
dipole resonance modes, and induced chiral fields on
nanostructures.
Funder
Natural Science Basic Research Program of
Shaanxi Province
China Postdoctoral Science
Foundation
National Natural Science Foundation of
China
Natural Science Foundation of Shaanxi
Province
Cited by
1 articles.
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