Third-Order Nonlinear Wavelength Conversion in Chalcogenide Glass Waveguides towards Mid-Infrared Photonics

Fengbo Han, Jiaxin Gu, Lu Huang, Hang Wang, Yali Huang, Xuecheng Zhou, Shaoliang Yu, Zhengqian Luo, Zhipeng Dong, Qingyang Du
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Abstract

The increasing demand in spectroscopy and sensing calls for mid-IR light sources. Here, we theoretically investigate nonlinear wavelength conversion of Ge28Sb12Se60 chalcogenide glass waveguide in the mid-IR spectral regime. With waveguide dispersion engineering, we predict generation of over an octave wavelength (2.8~5.9 μm) tuning range Raman soliton self-frequency shift, over 2.5 octaves wavelength cover range supercontinuum (1.2~8.0 μm), as well as single soliton Kerr comb generated in suspended Ge28Sb12Se60 waveguide. Our findings evidenced that Ge28Sb12Se60 chalcogenide glass waveguides can simultaneously satisfy the generation of Raman soliton self frequency shift, supercontinuum spectrum, and Kerr frequency comb generation through dispersion engineering towards mid-IR on chip.
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卤化玻璃波导中的三阶非线性波长转换,迈向中红外光学
光谱学和传感领域对中红外光源的需求与日俱增。在此,我们从理论上研究了 Ge28Sb12Se60 卤化物玻璃波导在中红外光谱范围内的非线性波长转换。通过波导色散工程,我们预测在悬浮的 Ge28Sb12Se60 波导中会产生超过一个八度波长(2.8~5.9 μm)调谐范围的拉曼孤子自频移、超过 2.5 个八度波长覆盖范围的超连续(1.2~8.0 μm)以及单孤子克尔梳。我们的研究结果表明,Ge28Sb12Se60 卤化物玻璃波导可同时满足拉曼孤子自频移、超连续谱和克尔频率梳的产生,并通过色散工程将其应用于芯片中红外波段。
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