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Optical structures and their control in a liquid-crystal-light-valve experiment

机译:液晶光阀实验中的光学结构及其控制

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We review the conditions for the control of optical structures in a nonlinear optical experiment, which is a Liquid-Crystal-Light-Valve with optical feedback. The optical structures we deal with may be either localized states or spatially extended patterns. Indeed, the localized structures here described represent the localized solutions of a pattern-forming system. We will show that there exists different regions of existence of such localized states, and that different types of localized structures can be selected depending on the choice of the control parameters. Localized states, stable for some range of parameters, are in general characterized by complex spatio-temporal dynamics. In the same way, spatially extended patterns show space-time chaotic behaviors. We show that pattern targeting and control may be achieved by adding an extra control loop to the experiment. Different target patterns can be stabilized in real time and synchronization between space-time chaotic signals is demonstrated.
机译:我们在非线性光学实验中回顾了控制光学结构的条件,该实验是具有光学反馈的液晶光阀。我们处理的光学结构可能是局部状态或空间扩展的图案。实际上,这里描述的局部结构代表图案形成系统的局部解决方案。我们将显示存在这种局部状态的不同区域,并且可以根据控制参数的选择来选择不同类型的局部结构。对于某些参数范围稳定的局部状态通常以复杂的时空动力学为特征。以同样的方式,空间扩展模式显示出时空混沌行为。我们表明,可以通过在实验中添加额外的控制循环来实现模式定位和控制。可以实时稳定不同的目标模式,并演示了时空混沌信号之间的同步。

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