Analytic Optimization of Near-Field Optical Chirality Enhancement

ACS Photonics. 2017 Feb 15;4(2):396-406. doi: 10.1021/acsphotonics.6b00887. Epub 2017 Jan 25.

Abstract

We present an analytic derivation for the enhancement of local optical chirality in the near field of plasmonic nanostructures by tuning the far-field polarization of external light. We illustrate the results by means of simulations with an achiral and a chiral nanostructure assembly and demonstrate that local optical chirality is significantly enhanced with respect to circular polarization in free space. The optimal external far-field polarizations are different from both circular and linear. Symmetry properties of the nanostructure can be exploited to determine whether the optimal far-field polarization is circular. Furthermore, the optimal far-field polarization depends on the frequency, which results in complex-shaped laser pulses for broadband optimization.

Keywords: analytic optimization; chiroptical spectroscopy; femtosecond polarization pulse shaping; near-field response; optical chirality; plasmonics.