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Theoretical Analysis of Optical Poling and Frequency Doubling Effect Based on Classical Model

机译:基于经典模型的光极化和倍频效应的理论分析

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Optical poling and frequency doubling effect, is one of the effect ive manners to induce second order nonlinearity and realize frequency doubling in glass materials. The classical model believes that an internal electric field is built in glass when it's exposed by fundamental and frequency-doubled light at the same time, and second order nonlinearity appears as a result of the electric field and the orientation of poles. The process of frequency doubling in glass is quasi phase matched. In this letter, the physical process of poling and doubling process in optical poling and frequency doubling effect is deeply discussed in detail. The magnitude and direction of internal electric field, second order nonlinear coefficient and its components, strength and direction of frequency doubled output signal, quasi phase matched coupled wave equations are given in analytic expression. Model of optical poling and frequency doubling effect which can be quantitatively analyzed are constructed in theory, which set a foundation for intensive study of optical poling and frequency doubling effect.
机译:光学极化和倍频效应是在玻璃材料中引起二阶非线性并实现倍频的有效方式之一。经典模型认为,内部电场是在玻璃同时被基波和倍频光曝光时在玻璃中建立的,并且由于电场和磁极的取向而出现了二阶非线性。玻璃中的倍频过程是准相位匹配的。在这封信中,将详细讨论光极化和倍频效应中极化和倍频过程的物理过程。解析表达式给出了内部电场的大小和方向,二阶非线性系数及其成分,倍频输出信号的强度和方向,准相位匹配耦合波方程。从理论上构建了可以定量分析的光极化和倍频效应模型,为深入研究光极化和倍频效应奠定了基础。

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