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Perturbative model for nonstationary second-order cascaded effects

机译:非平稳二阶级联效应的摄动模型

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We report a semianalytical solution describing the type I second-order nonlinear interaction of the fundamental and the second-harmonic fields in a nonlinear crystal, which accounts for the phase-and group-velocity mismatch of the interacting pulses. The method uses a series-development solution of the propagation equations in respect to the second-harmonic conversion efficiency. The method describes the self-phase and self-amplitude modulation experienced by the fundamental pulse in single-and double-pass (i.e., reinjecting into the nonlinear crystal the outgoing pulses) interaction geometries, following better with respect to a numerical analysis, the dependence from the propagation parameters such as the crystal length, the pulse duration, and the phase-and group-velocity mismatch. It appears that it is possible to obtain an efficient self-phase modulation on the fundamental field even in nonstationary conditions. This paper describes the advantages of a double-pass configuration, which, for a given crystal length, allows a stronger nonlinear phase modulation of the fundamental field and minimizes its losses toward the second harmonic. (C) 1998 Optical Society of America. [References: 36]
机译:我们报告了一个半解析解,描述了非线性晶体中基本场和二次谐波场的I型二阶非线性相互作用,这说明了相互作用脉冲的相速度和群速度失配。该方法使用关于二次谐波转换效率的传播方程的级数展开式解。该方法描述了单次和两次通过(即,将输出脉冲重新注入到非线性晶体中)相互作用几何中的基本脉冲所经历的自相位和自幅度调制,相对于数值分析而言,更好地遵循了从传播参数,例如晶体长度,脉冲持续时间以及相速度和群速度失配。看来即使在非平稳条件下,也有可能在基场上获得有效的自相位调制。本文介绍了双通配置的优点,对于给定的晶体长度,它允许对基波场进行更强的非线性相位调制,并将其向二次谐波的损耗降至最低。 (C)1998年美国眼镜学会。 [参考:36]

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