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首页> 外文期刊>Physical review, E >Electric-field-induced weakly chaotic transients in ferroelectric liquid crystals
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Electric-field-induced weakly chaotic transients in ferroelectric liquid crystals

机译:铁电液晶中电场感应的弱混沌瞬变

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Nonlinear dynamics induced in surface stabilized ferroelectric liquid crystals by strong alternating external electric fields is studied both theoretically and experimentally. As has already been shown, molecular reorientations induced by sufficiently strong fields of high-enough frequencies can reveal a long transient behavior that has a weakly chaotic character. The resulting complex dynamics of ferroelectric liquid crystals can be considered not only as a consequence of irregular motions of particular molecules but also as a repercussion of a surface-enforced partial decorrelation of nonlinear molecular motions within smectic layers. To achieve more insight into the nature of this phenomenon and to show that the underlying complex field-induced behavior of smectic liquid crystals is not exceptional, ranges of system parameters for which the chaotic behavior occurs are determined. It is proved that there exists a large enough set of initial phase trajectory points, for which weakly chaotic long-time transitory phenomena occur, and, thereby, it is demonstrated that such a chaotic behavior can be regarded as being typical for strongly field-driven thin liquid crystal systems. Additionally, the influence of low-amplitude random noise on the duration of the transient processes is numerically studied. The strongly nonlinear contribution to the electro-optic response, experimentally determined for liquid crystal samples at frequencies lower than the actual field frequency, is also analyzed for long-time signal sequences. Using a statistical approach to distinguish numerically response signals of samples from noise generated by measuring devices, it is shown that the distribution of sample signals distinctly differs from the device noise. This evidently corroborates the occurrence of the nonlinear low-frequency effect, found earlier for different surface stabilized liquid crystal samples.
机译:理论上和实验上都研究了强交替外部电场在表面稳定的铁电液晶中引起的非线性动力学。如已经显示的那样,由足够高的频率的足够强的场引起的分子重新定向可以揭示具有弱混沌特性的长瞬态行为。铁电液晶所产生的复杂动力学不仅可以认为是特定分子的不规则运动的结果,而且还可以认为是近晶层内非线性分子运动的表面增强的部分去相关的结果。为了更深入地了解这种现象的本质,并表明近晶液晶的潜在复杂场诱导行为不是例外,确定发生混沌行为的系统参数范围。事实证明,存在足够多的初始相位轨迹点集,对于这些轨迹点,会发生弱混沌的长期瞬态现象,从而证明,这种混沌行为可视为强场驱动的典型现象。薄液晶系统。此外,数值研究了低振幅随机噪声对瞬态过程持续时间的影响。对于长时间的信号序列,还分析了对电光响应的强烈非线性贡献(通过实验确定了低于实际场频的频率下的液晶样品)。使用统计方法将样品的数字响应信号与测量设备产生的噪声区分开,表明样品信号的分布与设备噪声明显不同。这显然证实了非线性低频效应的发生,这是较早在不同表面稳定的液晶样品中发现的。

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