Issue 7, 2016

Planar plasmonic chiral nanostructures

Abstract

A strong chiral optical response induced at a plasmonic Fano resonance in a planar Au heptamer nanostructure was experimentally and theoretically demonstrated. The scattering spectra show the characteristic narrow-band feature of Fano resonances for both left and right circular polarized lights, with a chiral response reaching 30% at the Fano resonance. Specifically, we systematically investigate the chiral response of planar heptamers with gradually changing the inter-particle rotation angles and separation distance. The chiral spectral characteristics clearly depend on the strength of Fano resonances and the associated near-field optical distributions. Finite element method simulations together with a multipole expansion method demonstrate that the enhanced chirality is caused by the excitation of magnetic quadrupolar and electric toroidal dipolar modes. Our work provides an effective method for the design of 2D nanostructures with a strong chiral response.

Graphical abstract: Planar plasmonic chiral nanostructures

Supplementary files

Article information

Article type
Communication
Submitted
31 Dec 2015
Accepted
19 Jan 2016
First published
20 Jan 2016

Nanoscale, 2016,8, 3900-3905

Author version available

Planar plasmonic chiral nanostructures

S. Zu, Y. Bao and Z. Fang, Nanoscale, 2016, 8, 3900 DOI: 10.1039/C5NR09302C

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