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Bending of Thin Liquid Crystal Elastomer under Irradiation of Visible Light: Finsler Geometry Modeling

机译:可见光辐照下薄液晶弹性体的弯曲:Finsler几何建模

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摘要

In this paper, we show that the 3D Finsler geometry (FG) modeling technique successfully explains a reported experimental result: a thin liquid crystal elastomer (LCE) disk floating on the water surface deforms under light irradiation. In the reported experiment, the upper surface is illuminated by a light spot, and the nematic ordering of directors is influenced, but the nematic ordering remains unchanged on the lower surface contacting the water. This inhomogeneity of the director orientation on/inside the LCE is considered as the origin of the shape change that drives the disk on the water in the direction opposite the movement of the light spot. However, the mechanism of the shape change is still insufficiently understood because to date, the positional variable for the polymer has not been directly included in the interaction energy of the models for this system. We find that this shape change of the disk can be reproduced using the FG model. In this FG model, the interaction between σ, which represents the director field corresponding to the directional degrees of LC, and the polymer position is introduced via the Finsler metric. This interaction, which is a direct consequence of the geometry deformation, provides a good description of the shape deformation of the LCE disk under light irradiation.
机译:在本文中,我们证明了3D Finsler几何(FG)建模技术成功地解释了已报告的实验结果:漂浮在水表面的薄液晶弹性体(LCE)盘在光照射下会变形。在报道的实验中,上表面被一个光点照亮,并且指向矢的向列顺序受到影响,但是在与水接触的下表面上,向列顺序保持不变。 LCE上/内的导向器方向的这种不均匀性被认为是形状变化的起源,该形状变化沿与光斑移动相反的方向在水面上驱动光盘。但是,由于迄今为止,聚合物的位置变量还没有直接包含在该系统模型的相互作用能中,因此仍然对形状变化的机理还没有足够的了解。我们发现,可以使用FG模型来再现磁盘的这种形状变化。在此FG模型中, σ< / mi> (代表与LC方向度相对应的指向矢场),并通过Finsler度量引入聚合物位置。这种相互作用是几何变形的直接结果,它很好地描述了LCE光盘在光照射下的形状变形。

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