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Controlled optical structures in a nonlinear system involving the suppression of low spatial frequencies in the feedback loop

机译:非线性系统中的受控光学结构,涉及抑制反馈环路中的低空间频率

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摘要

A nonlinear optical system with spatially distributed feedback was studied both theoretically and experimentally. The phase-to-intensity transformation in this system was performed by a spatial filter cable of suppressing low spatial frequencies. Hard excitation of stationary spatial structures observed in this system was explained by an analysis of the phase space structure of the amplitude equations. The developed theoretical approach, which uses a step-function approximation of the steady-state solution, allows one to determine the main quantitative characteristics of the generated structures. The basic properties of the response of the system to external perturbations with various symmetries were investigated experimentally. The obtained experimental data qualitatively agree with the results of the theoretical analysis.
机译:从理论和实验上研究了具有空间分布反馈的非线性光学系统。该系统中的相强度转换是通过抑制低空间频率的空间滤波器电缆执行的。通过分析振幅方程的相空间结构,解释了在该系统中观察到的静止空间结构的硬激励。所开发的理论方法使用稳态解的阶跃函数逼近,可以确定所生成结构的主要定量特征。实验研究了系统对具有各种对称性的外部扰动的响应的基本特性。所获得的实验数据在质量上与理论分析的结果吻合。

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