材料科学
调制(音乐)
光电子学
超短脉冲
二次谐波产生
调幅
宽带
频率调制
半导体
非线性系统
光学
极化(电化学)
高次谐波产生
非线性光学
脉冲幅度调制
相位调制
光子学
脉冲整形
光调制器
脉搏(音乐)
脉冲宽度调制
振幅
灵活性(工程)
谐波
模式锁定
作者
Sebastian Klimmer,Omid Ghaebi,Ziyang Gan,Antony George,Andrey Turchanin,Giulio Cerullo,Giancarlo Soavi
出处
期刊:Nature Photonics
[Nature Portfolio]
日期:2021-09-09
卷期号:15 (11): 837-842
被引量:146
标识
DOI:10.1038/s41566-021-00859-y
摘要
Abstract Second-harmonic generation is of paramount importance in several fields of science and technology, including frequency conversion, self-referencing of frequency combs, nonlinear spectroscopy and pulse characterization. Advanced functionalities are enabled by modulation of the harmonic generation efficiency, which can be achieved with electrical or all-optical triggers. Electrical control of the harmonic generation efficiency offers large modulation depth at the cost of low switching speed, by contrast to all-optical nonlinear devices, which provide high speed and low modulation depth. Here we demonstrate all-optical modulation of second-harmonic generation in MoS 2 with a modulation depth of close to 100% and speed limited only by the fundamental pulse duration. This result arises from a combination of D 3 h crystal symmetry and the deep subwavelength thickness of the sample, it can therefore be extended to the whole family of transition metal dichalcogenides to provide great flexibility in the design of advanced nonlinear optical devices such as high-speed integrated frequency converters, broadband autocorrelators for ultrashort pulse characterization, and tunable nanoscale holograms.
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