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Phase-matched second-harmonic generation in coupled nonlinear optical waveguides

机译:耦合非线性光波导中的相位匹配的二次谐波产生

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摘要

Phase matching is crucial for effective nonlinear frequency conversion. Recent advances in photonic miniaturization greatly promote implementations of efficient nonlinear frequency conversion in integrated photonic devices. Here, we investigate second-harmonic generation in coupled nonlinear waveguides. We develop a nonlinear optical coupled-mode theory and implement the concept of supermode to analyze the phase-matching condition, which greatly facilitates deep understanding of physics therein and optimization of device design. We have successfully identified six phase-matching conditions for the first time. The dynamic nonlinear optical processes are analytically modeled, which explicitly demonstrates that the phase-matching condition can be realized by extra momentum compensating due to the interwaveguide coupling. The influences of input pump amplitude and relative phase difference are successively investigated. The theoretical model presented here should be readily generalized to other nonlinear optical processes (e.g., difference frequency generations) and will remain valid in asymmetric coupled waveguide structures or even beyond a weakly coupling regime. Our results will be useful for constructing highly efficient integrated nonlinear optical conversion devices with extended functionality. (C) 2019 Optical Society of America
机译:相位匹配对于有效的非线性频率转换是至关重要的。光子小型化最近的进展大大促进了集成光子器件中有效非线性频率转换的实现。在这里,我们研究了耦合的非线性波导中的第二谐波产生。我们开发了非线性光学耦合模式理论并实现了超导的概念,以分析相位匹配条件,这极大地促进了对物理学的深刻理解和设备设计的优化。我们首次成功地确定了六个相位匹配的条件。动态非线性光学过程进行了分析建模,其明确说明了相匹配的条件可以通过额外的势头补偿来实现由于interwaveGuide耦合。连续研究输入泵幅度和相对相位差的影响。这里呈现的理论模型应该容易地广泛地推广到其他非线性光学过程(例如,差频几代),并且在不对称耦合波导结构中甚至超过弱耦合状态。我们的结果对于构造具有扩展功能的高效集成非线性光学转换设备是有用的。 (c)2019年光学学会

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    South China Univ Technol Sch Phys &

    Optoelect Guangzhou 510641 Guangdong Peoples R China;

    South China Univ Technol Sch Phys &

    Optoelect Guangzhou 510641 Guangdong Peoples R China;

    South China Univ Technol Sch Phys &

    Optoelect Guangzhou 510641 Guangdong Peoples R China;

    Zhejiang Univ Coll Opt Sci &

    Engn State Key Lab Modern Opt Instrumentat Hangzhou 310027 Zhejiang Peoples R China;

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  • 正文语种 eng
  • 中图分类 光学;
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