Tuneable Anisotropic Plasmonics with Shape‐Symmetric Conducting Polymer Nanoantennas

Author:

Duan Yulong1,Rahmanudin Aiman1,Chen Shangzhi1,Kim Nara1,Mohammadi Mohsen1,Tybrandt Klas1ORCID,Jonsson Magnus P.1ORCID

Affiliation:

1. Laboratory of Organic Electronics Department of Science and Technology (ITN) Linköping University Norrköping SE‐601 74 Sweden

Abstract

AbstractA wide range of nanophotonic applications rely on polarization‐dependent plasmonic resonances, which usually requires metallic nanostructures that have anisotropic shape. This work demonstrates polarization‐dependent plasmonic resonances instead by breaking symmetry via material permittivity. The study shows that molecular alignment of a conducting polymer can lead to a material with polarization‐dependent plasma frequency and corresponding in‐plane hyperbolic permittivity region. This result is not expected based only on anisotropic charge mobility but implies that also the effective mass of the charge carriers becomes anisotropic upon polymer alignment. This unique feature is used to demonstrate circularly symmetric nanoantennas that provide different plasmonic resonances parallel and perpendicular to the alignment direction. The nanoantennas are further tuneable via the redox state of the polymer. Importantly, polymer alignment could blueshift the plasma wavelength and resonances by several hundreds of nanometers, forming a novel approach toward reaching the ultimate goal of redox‐tunable conducting polymer nanoantennas for visible light.

Funder

Stiftelsen Åforsk

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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