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大孔径可调折射菲涅尔液晶透镜的设计

Design of a large aperture tunable refractive Fresnel liquid crystal lens.

作者信息

Jamali Afsoon, Bryant Douglas, Zhang Yanli, Grunnet-Jepsen Anders, Bhowmik Achintya, Bos Philip J

出版信息

Appl Opt. 2018 Mar 1;57(7):B10-B19. doi: 10.1364/AO.57.000B10.

Abstract

A large aperture tunable lens based on liquid crystals, which is considered for near-to-eye applications, is designed, built, and characterized. Large liquid crystal lenses with high quality are limited by very slow switching speeds due to the large optical path difference (OPD) required. To reduce the switching time of the lens, the thickness is controlled through the application of several phase resets, similar to the design of a Fresnel lens. A main point of the paper is the design of the Fresnel structure to have a minimal effect on the image quality. Our modeling and experimental results demonstrate that minimal image degradation due to the phase resets is observable when the segment spacing is chosen by taking into account human eye resolution. Such lenses have applications related to presbyopia and, in virtual reality systems, to solve the well-known issue of accommodation-convergence mismatch.

摘要

设计、制造并表征了一种基于液晶的大孔径可调谐透镜,该透镜被考虑用于近眼应用。由于所需的大光程差(OPD),高质量的大型液晶透镜受到非常慢的切换速度的限制。为了减少透镜的切换时间,通过应用多个相位重置来控制厚度,这类似于菲涅耳透镜的设计。本文的一个要点是菲涅耳结构的设计要对图像质量产生最小的影响。我们的建模和实验结果表明,当通过考虑人眼分辨率来选择段间距时,可以观察到由于相位重置导致的图像退化最小。这种透镜可应用于老花眼相关领域,并且在虚拟现实系统中,可解决众所周知的调节 - 会聚不匹配问题。

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