谐振器
诺共振
调制(音乐)
等离子体子
光电子学
激光阈值
材料科学
硅
光学
电介质
二次谐波产生
透射率
非线性光学
物理
激光器
波长
声学
作者
Yuanmu Yang,Wenyi Wang,Abdelaziz Boulesbaa,Ivan I. Kravchenko,Dayrl P. Briggs,Alexander A. Puretzky,David B. Geohegan,Jason Valentine
出处
期刊:Nano Letters
[American Chemical Society]
日期:2015-10-28
卷期号:15 (11): 7388-7393
被引量:477
标识
DOI:10.1021/acs.nanolett.5b02802
摘要
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 × 10(5) 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.
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