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纳米晶硅纳米颗粒中的高效二次谐波产生。

Efficient Second-Harmonic Generation in Nanocrystalline Silicon Nanoparticles.

机构信息

Department of Nanophotonics and Metamaterials, ITMO University , St. Petersburg 197101, Russia.

Nanotechnology Department, Laser Zentrum Hannover e.V. , Hannover D-30419, Germany.

出版信息

Nano Lett. 2017 May 10;17(5):3047-3053. doi: 10.1021/acs.nanolett.7b00392. Epub 2017 Apr 24.

Abstract

Recent trends to employ high-index dielectric particles in nanophotonics are motivated by their reduced dissipative losses and large resonant enhancement of nonlinear effects at the nanoscale. Because silicon is a centrosymmetric material, the studies of nonlinear optical properties of silicon nanoparticles have been targeting primarily the third-harmonic generation effects. Here we demonstrate, both experimentally and theoretically, that resonantly excited nanocrystalline silicon nanoparticles fabricated by an optimized laser printing technique can exhibit strong second-harmonic generation (SHG) effects. We attribute an unexpectedly high yield of the nonlinear conversion to a nanocrystalline structure of nanoparticles supporting the Mie resonances. The demonstrated efficient SHG at green light from a single silicon nanoparticle is 2 orders of magnitude higher than that from unstructured silicon films. This efficiency is significantly higher than that of many plasmonic nanostructures and small silicon nanoparticles in the visible range, and it can be useful for a design of nonlinear nanoantennas and silicon-based integrated light sources.

摘要

最近,在纳米光子学中采用高折射率介电粒子的趋势,是因为它们在纳米尺度上降低了耗散损失,并大幅增强了非线性效应的共振增强。由于硅是中心对称材料,因此对硅纳米颗粒的非线性光学性质的研究主要针对的是三次谐波产生效应。在这里,我们通过实验和理论证明,通过优化的激光打印技术制造的共振激发的纳米晶硅纳米颗粒可以表现出强烈的二次谐波产生(SHG)效应。我们将非线性转换的异常高产量归因于支持米氏共振的纳米颗粒的纳米晶结构。从单个硅纳米颗粒中在绿光下显示出的高效二次谐波产生比非结构化硅膜高两个数量级。这种效率明显高于在可见光范围内的许多等离子体纳米结构和小硅纳米颗粒,它可用于设计非线性纳米天线和基于硅的集成光源。

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