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首页> 外文期刊>Applied optics >Field-induced refractive index variation in the dark conglomerate phase for polarization-independent switchable liquid crystal lenses
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Field-induced refractive index variation in the dark conglomerate phase for polarization-independent switchable liquid crystal lenses

机译:偏振无关的可切换液晶透镜在暗团块相中的场致折射率变化

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Liquid crystal lenses are an emerging technology that can provide variable focal power in response to applied voltage. Many designs for liquid-crystal-based lenses are polarization dependent, so that 50% of light is not focused as required, making polarization-independent technologies very attractive. Recently, the dark conglomerate (DC) phase, which is an optically isotropic liquid crystalline state, has been shown to exhibit a large change in refractive index in response to an applied electric field (Δn = 0.04). This paper describes computational modeling of the electrostatic solutions for two different types of 100 μm diameter liquid crystal lenses, which include the DC phase, demonstrating that it shows great potential for efficient isotropic optical switching in lenses. A feature of the field dependence of the refractive index change in the DC phase is that it is approximately linear in a certain range, leading to the prediction of excellent optical quality for driving fields in this regime. Interestingly, a simulated microlens is shown to exhibit two modes of operation: a positive lens based upon a uniform bulk change in refractive index at high voltages, and a negative lens resulting from the induction of a gradient index effect at intermediate voltages.
机译:液晶透镜是一种新兴技术,可以根据施加的电压提供可变焦距。液晶透镜的许多设计都是偏振相关的,因此50%的光没有按要求聚焦,这使得偏振无关技术非常有吸引力。近来,已经显示出呈光学各向同性的液晶态的暗团块(DC)相响应于施加的电场(Δn= 0.04)表现出大的折射率变化。本文介绍了两种不同类型的直径为100μm的液晶透镜(包括DC相)的静电溶液的计算模型,表明该方法显示出在透镜中进行高效各向同性光学切换的巨大潜力。 DC相中折射率变化的场相关性的特征在于,在一定范围内它是近似线性的,从而导致在这种情况下对于驱动场的优异光学质量的预测。有趣的是,模拟微透镜显示出两种工作模式:基于在高电压下折射率均匀整体变化的正透镜,以及由于在中等电压下感应梯度折射率效应而产生的负透镜。

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