November 2015

Journal

Nonlinear Fano-Resonant Dielectric Metasurfaces

By:
Yang, Yuanmu; Wang, Wenyi; Boulesbaa, Abdelaziz ; Kravchenko, Ivan I; Briggs, Dayrl P; Puretzky, Alexander A; Geohegan, David B; Valentine, Jason G
Journal Name:
Nano Letters
Page Number:
7388-7393
Volume:
15
Issue Number:
11
Publication Date:
November 18, 2015
View DOI Listing:
https://doi.org/10.1021/acs.nanolett.5b02802

Abstract

Strong nonlinear light−matter interaction is highly sought-after for a variety of applications including lasing and all-optical light modulation. Recently, resonant plasmonic structures have been considered promising candidates for enhancing nonlinear optical processes due to their ability to greatly enhance the optical near-field; however, their small mode volumes prevent the inherently large nonlinear susceptibility of the metal from being efficiently exploited. Here, we present an alternative approach that utilizes a Fano-resonant silicon metasurface. The metasurface results in strong near-field enhancement within the volume of the silicon resonator while minimizing two photon absorption. We measure a third harmonic generation enhancement factor of 1.5 × 105 with respect to an unpatterned silicon film and an absolute conversion efficiency of 1.2 × 10−6 with a peak pump intensity of 3.2 GW cm−2. The enhanced nonlinearity, combined with a sharp linear transmittance spectrum, results in transmission modulation with a modulation depth of 36%. The modulation mechanism is studied by pump−probe experiments