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Adaptive nematic liquid crystal lens array with resistive layer
Authors:Fan Chu  Li-Lan Tian  Rui Li  Xiao-Qing Gu  Xiang-Yu Zhou  Di Wang
Institution:1. School of Electronics and Information Engineering, Sichuan University, Chengdu, China;2. School of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing, China
Abstract:ABSTRACT

We propose an adaptive nematic liquid crystal (LC) lens array using a dielectric layer with low dielectric constant as resistive layer. With the resistive layer and periodic-arranged iridium tin oxide (ITO) electrodes, the vertical electric field across the LC layer varies linearly over the lens aperture is obtained in the voltage-on state. As a result, a centrosymmetric gradient refractive index profile within the LC layer is generated, which causes the focusing behaviour. As a result of the optimisation, a thin cell gap which greatly reduces the switching time of the LC lens array can be achieved in our design. The main advantages of the proposed LC lens array are in the comparatively low operating voltage, the flat substrate surface, the simple electrodes, and the uniform LC cell gap. The simulation results show that the focal length of the LC lens array can be tuned continuously from infinity to 3.99 mm by changing the applied voltage.
Keywords:Liquid crystal lens array  resistive layer  low operating voltage  uniform cell gap  short focal length
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