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Geometric analysis of optical frequency conversion and its control in quadratic nonlinear media

机译:二次非线性介质中光频率转换的几何分析及其控制

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We analyze frequency conversion and its control among three light waves using a geometric approach that enables the dynamics of the waves to be visualized on a closed surface in three dimensions. It extends the analysis based on the undepleted-pump linearization and provides a simple way to understand the fully nonlinear dynamics. The Poincare sphere has been used in the same way to visualize polarization dynamics. A geometric understanding of control strategies that enhance energy transfer among interacting waves is introduced, and the quasi-phase-matching strategy that uses microstructured quadratic materials is illustrated in this setting for both type I and II second-harmonic generation and for parametric three-wave interactions. (C) 2000 Optical Society of America [S0740-3224(00)02006-3]. [References: 19]
机译:我们使用一种几何方法来分析三个光波之间的频率转换及其控制,该方法可以在三维的封闭表面上可视化光波的动力学。它扩展了基于无损耗泵线性化的分析,并提供了一种了解完全非线性动力学的简单方法。庞加莱球已以相同的方式用于可视化极化动力学。介绍了对控制策略的几何理解,以增强相互作用波之间的能量传递,并在此设置中说明了使用微结构二次材料的准相位匹配策略,用于I和II型二次谐波产生以及参量三波互动。 (C)2000年美国眼镜学会[S0740-3224(00)02006-3]。 [参考:19]

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