首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Analysis of difference frequency generation and cascaded second-harmonic generation and difference frequency generation in lossy quasi-phase-matched semiconductor waveguides
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Analysis of difference frequency generation and cascaded second-harmonic generation and difference frequency generation in lossy quasi-phase-matched semiconductor waveguides

机译:有损耗准相位匹配半导体波导的差频产生和级联二次谐波产生及差频产生分析

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摘要

The analytical expressions of converted wave power for difference frequency generation (DFG), cascaded second-harmonic generation and difference frequency generation (cSHG/DFG) processes have been obtained under the non-depletion approximation in lossy waveguides. It is shown that the analytical results and the numerical simulation with depletion agree very well for lossy waveguides. Employing the analytical solutions, the formulas of optimized waveguide lengths in lossy waveguides are obtained for DFG and cSHG/DFG processes. After designing an AlGaAs quasi-phase-matched ridge waveguide, we investigate and compare the characteristics of the second-order nonlinear effects with and without waveguide loss, such as conversion efficiency, conversion bandwidth, pump wavelength tolerance and temperature stability in detail.
机译:在有损波导的非损耗近似下,获得了用于差分频率生成(DFG),级联二次谐波生成和差分频率生成(cSHG / DFG)过程的转换波功率的解析表达式。结果表明,对于有损耗的波导,其分析结果与损耗的数值模拟非常吻合。利用解析解,得出了DFG和cSHG / DFG工艺中有损耗波导中最佳波导长度的公式。在设计了一个AlGaAs准相位匹配脊形波导之后,我们研究并比较了具有和不具有波导损耗的二阶非线性效应的特性,例如转换效率,转换带宽,泵浦波长容限和温度稳定性。

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