周期调制激光束的相位和振幅近共振自作用

V. Derbov, V. V. Serov, I. L. Plastun, D. Larionov
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引用次数: 4

摘要

给出了频率随时间谐波调制的光束近共振自作用的全时空数值模拟。描述光束在具有饱和吸收和折射的两能级介质中的传播的麦克斯韦-布洛赫方程采用了多维非线性薛定谔方程的原始稳定数值格式进行求解。由于非线性自聚焦和自相位调制效应,强度在光束截面上的延迟重分布以相当重要的方式影响输出信号的相位和幅度动态,这取决于载流子激光的频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase and amplitude near-resonance self-action in periodically modulated laser beams
Full space-time numerical modeling of near-resonance self-action of a beam, whose frequency is harmonically modulated in time, is presented. Maxwell-Bloch equations describing the propagation of the beam through a two-level medium with saturable absorption and refraction are solved using an original stable numerical scheme for multidimensional nonlinear Schrodinger equations. Delayed redistribution of intensity over the beam cross-section due to nonlinear self-focusing and self-phase-modulation effects is shown to affect the phase and the amplitude dynamics of the output signal in a rather nontrivial way, depending on the carrier laser frequency.
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