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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Dispersion engineering of a As2Se3-based strip/slot hybrid waveguide for mid-infrared broadband wavelength conversion
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Dispersion engineering of a As2Se3-based strip/slot hybrid waveguide for mid-infrared broadband wavelength conversion

机译:基于As2Se3的条/缝混合波导的色散工程,用于中红外宽带波长转换

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摘要

An arsenic tri-selenide-based strip/slot hybrid waveguide with a single horizontal silica slot is proposed to achieve an extremely low and flat dispersion with three zero dispersion wavelengths. By adjusting the geometrical structural parameters of the hybrid waveguide, dispersion tailoring is fully obtained. The flat group velocity dispersion varying between +/- 0.08 ps(2)/(m) is obtained over a 1253 nm bandwidth. The parameters of effective area, nonlinear coefficient, and third-order dispersion are all investigated. Moreover, a compact on-chip all-optical wavelength converter is designed based on degenerate four-wave mixing in this waveguide. The dependencies of conversion efficiency and conversion bandwidth on the pump wavelength are discussed. The impact of pump power and signal power on the conversion efficiency is also investigated. The results show that a maximal conversion efficiency of 0.46 dB, and a 3-dB conversion bandwidth of 830 nm in the mid-infrared is achieved.
机译:提出了具有单个水平二氧化硅缝隙的基于砷化三硒化物的条/缝混合波导,以实现具有三个零色散波长的极低且平坦的色散。通过调整混合波导的几何结构参数,可以完全实现色散调整。在1253 nm带宽上获得了在+/- 0.08 ps(2)/(m)之间变化的平坦组速度色散。研究了有效面积,非线性系数和三阶色散的参数。此外,基于在该波导中的简并四波混频,设计了紧凑的片上全光波长转换器。讨论了转换效率和转换带宽对泵浦波长的依赖性。还研究了泵浦功率和信号功率对转换效率的影响。结果表明,在中红外中实现了最大转换效率0.46 dB和3 dB转换带宽830 nm。

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