Transition to spatiotemporal intermittency and defect turbulence in a liquid crystal light valve with translational optical feedback

F. Álvarez-Garrido,, M. Clerc, G. González-Cortés, M. Wilson
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Abstract

Optical coupling in pattern-forming systems brings out the emergence and transition of complex spatiotemporal behaviors. A liquid crystal light valve experiment with translational optical feedback shows the appearance of striped patterns. When the translational coupling length increases, the system exhibits transitions to traveling, spatiotemporal intermittency, and defect turbulence of striped waves. From the first principles, an order parameter equation valid close to the nascent of bistability together with a translationally coupling is derived. The dynamics of the liquid crystal light valve with translational optical feedback and the proposed minimal model system show qualitative agreement.
具有平动光反馈的液晶光阀向时空间断性和缺陷湍流的转变
模式形成系统中的光耦合导致了复杂时空行为的产生和转变。用平动光反馈的液晶光阀实验显示了条纹图案的出现。当平动耦合长度增加时,系统表现出向行性、时空间断性和条纹波缺陷湍流的转变。从第一原理出发,导出了近似于双稳性平动耦合的阶参数方程。具有平动光反馈的液晶光阀动力学与所提出的最小模型系统定性一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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