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Coupled director and layer reorientation in layer tilted ferroelectric smectic liquid crystal cells

机译:耦合导体和层重新定向层倾斜铁电近晶液晶单元

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摘要

A reversible reorientation of smectic layers in surface stabilized ferroelectric liquid crystal (SSFLC) cells with layer tilted (chevron) geometries was found by electrooptical investigations. The reorientation of the layers superimposes the reorientation of the director along the S*C tilt cone and is suppressed, if the layers are irreversibly fixed in a bookself geometry by high electric fields. Based on a potential density expansion, a dynamical model of a coupled director and layer reorientation is proposed, which leads to excellent agreement with the electrooptical behaviour of the system investigated. The fit of the model to experimental data supplies a simultaneous determination of several material and cell constants. Basic electrooptical parameters, as contrast, switching times and optical overshoot, are reproduced correctly.
机译:通过电光研究发现,表面稳定的铁电液晶(SSFLC)单元中具有层倾斜(V形)几何形状的近晶层可逆地取向。如果这些层通过高电场不可逆地固定在书本几何中,则这些层的重新定向会叠加导向器沿S * C倾斜圆锥的重新定向,并且会受到抑制。基于潜在的密度扩展,提出了耦合的导向器和层重新定向的动力学模型,这导致与所研究系统的电光行为极好的一致性。模型与实验数据的拟合可同时确定几种材料和单元常数。正确再现了基本的电光参数,例如对比度,切换时间和光学过冲。

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