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首页> 外文期刊>Applied optics >Tunable liquid crystal microlens array using hole patterned electrode structure with ultrathin glass slab
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Tunable liquid crystal microlens array using hole patterned electrode structure with ultrathin glass slab

机译:使用带有超薄玻璃平板的带孔图案化电极结构的可调谐液晶微透镜阵列

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摘要

A configuration of hole patterned electrode liquid crystal microlens array with an ultrathin glass slab was fabricated. To reduce the fringing electric field effect and avoid the occurrence of disclination lines, an ultrathin glass slab was introduced between the patterned electrode and liquid crystal layer. The glass slab thickness played an important role in effecting the optical performance of the liquid crystal micro-lens array. An optimum thickness of 30 (mu)m was selected employing numerical simulation method. Using this method, we demonstrated a microlens array that greatly improved the phase profile and focus power. The dynamic focal range of the liquid crystal microlens array may extend from <1.2 mm to >8 mm and the minimum diameter of the focus spot could be as small as 15 (mu)m.
机译:制造具有超薄玻璃平板的带孔图案的电极液晶微透镜阵列的构造。为了减小边缘电场效应并避免旋错线的出现,在图案化电极和液晶层之间引入了超薄玻璃平板。玻璃平板的厚度在影响液晶微透镜阵列的光学性能中起重要作用。使用数值模拟方法选择了30μm的最佳厚度。使用这种方法,我们证明了微透镜阵列可以大大改善相位轮廓和聚焦能力。液晶微透镜阵列的动态焦点范围可以从<1.2mm扩展到> 8mm,并且焦点的最小直径可以小到15μm。

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