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A physical model describing the electro-optic behavior of switchable optical elements based on electrowetting

机译:描述基于电润湿的可切换光学元件的电光行为的物理模型

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Recently, we have demonstrated reflective display pixels based on the voltage-controlled two-dimensional movement of an oil/water interface across a hydrophobic fluoropolymer insulator [R. A. Hayes and B. J. Feenstra, Nature (London) 425, 383 (2003)]. Here a physical model is reported that describes the basic electro-optic behavior of these electrowetting-based optical elements. The model extends the classical electrowetting theory developed for a free water droplet on an insulator surface to the controlled two-dimensional movement of a confined oil/water interface. The model takes into account the spatial extent of the oil layer (<5 mm), where the oil film is well approximated by a spherical cap. The calculated results are in very good agreement with experimental data without employing fitting parameters. The model can be used to predict and optimize the electro-optic behavior of devices as a function of a range of well-defined parameters including the oil film thickness, the thickness of the insulating layer, the size of the optical element, and the oil/water interfacial tension.
机译:最近,我们已经展示了基于油/水界面在疏水性含氟聚合物绝缘体上的电压控制二维运动的反射型显示像素[R. A. Hayes和B. J. Feenstra,自然(伦敦)425,383(2003年)]。这里报道了一个物理模型,描述了这些基于电润湿的光学元件的基本电光行为。该模型将为绝缘子表面上的自由水滴开发的经典电润湿理论扩展到受限油/水界面的受控二维运动。该模型考虑了油层的空间范围(<5 mm),其中油膜通过球形盖很好地近似。不采用拟合参数,计算结果与实验数据非常吻合。该模型可用于根据一系列明确定义的参数来预测和优化设备的电光性能,这些参数包括油膜厚度,绝缘层的厚度,光学元件的尺寸和油类。 /水界面张力。

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