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Liquid-crystal microlenses with patterned ring-electrode arrays for multiple-mode two-dimensional imaging

机译:具有图案化环电极阵列的液晶微透镜,用于多模二维成像

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In this paper, a new liquid-crystal microlens array (LCMLA) with patterned ring-electrode arrays (PREAs) is investigated, which has an ability to acquire multiple-mode two-dimensional images with better electrically tunable efficiency than common liquid-crystal devices. The new type of LCMLA can be used to overcome several remarkable disadvantage of conventional liquid-crystal microlens arrays switched and adjusted electrically by relatively complex mechanism. There are two layer electrodes in the LCMLA developed by us. The top electrode layer consists of PREAs with different featured diameter but the same center for each single cell, and the bottom is a plate electrode. When both electrode structures are driven independently by variable AC voltage signal, a gradient electric field distribution could be obtained, which can drive liquid-crystal molecules to reorient themselves along the gradient electric field shaped, so as to demonstrate a satisfactory refractive index distribution. The common experiments are carried out to validate the performances needed. As shown, the focal length of the LCMLA can be adjusted continuously according to the variable voltage signal applied. According to designing, the LCMLA will be integrated continuously with an image sensors to set up a camera with desired performances. The test results indicate that our camera based on the LCMLA can obtain distinct multiple-mode two-dimensional images under the condition of using relatively low driving signal voltage.
机译:本文研究了一种具有图案化环电极阵列(瘙痒)的新的液晶微透镜阵列(LCMLA),其具有比公共液晶装置更好地采用更好的电动可调效率的多模二维图像的能力。新型的LCMLA可用于克服传统液晶微透镜阵列的几个显着缺点,通过相对复杂的机制电动切换和调节。 LCMLA中有两个层电极由我们开发。顶部电极层由具有不同特色直径的瘙痒,但每个单元的中心相同,底部是板电极。当通过可变AC电压信号独立地驱动两个电极结构时,可以获得梯度电场分布,这可以驱动液晶分子沿梯度电场形状重新定位,以证明令人满意的折射率分布。进行常见的实验以验证所需的性能。如图所示,可以根据施加的可变电压信号连续调节LCMLA的焦距。根据设计,LCMLA将与图像传感器连续集成,以将相机设置为具有所需性能的相机。测试结果表明,基于LCMLA的相机可以在使用相对低的驱动信号电压的条件下获得不同的多模式二维图像。

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