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基于液晶微透镜阵列的双偏振光场成像微系统用于直接三维观测。

Dual-polarized light-field imaging micro-system via a liquid-crystal microlens array for direct three-dimensional observation.

作者信息

Xin Zhaowei, Wei Dong, Xie Xingwang, Chen Mingce, Zhang Xinyu, Liao Jing, Wang Haiwei, Xie Changsheng

出版信息

Opt Express. 2018 Feb 19;26(4):4035-4049. doi: 10.1364/OE.26.004035.

DOI:10.1364/OE.26.004035
PMID:29475259
Abstract

Light-field imaging is a crucial and straightforward way of measuring and analyzing surrounding light worlds. In this paper, a dual-polarized light-field imaging micro-system based on a twisted nematic liquid-crystal microlens array (TN-LCMLA) for direct three-dimensional (3D) observation is fabricated and demonstrated. The prototyped camera has been constructed by integrating a TN-LCMLA with a common CMOS sensor array. By switching the working state of the TN-LCMLA, two orthogonally polarized light-field images can be remapped through the functioned imaging sensors. The imaging micro-system in conjunction with the electric-optical microstructure can be used to perform polarization and light-field imaging, simultaneously. Compared with conventional plenoptic cameras using liquid-crystal microlens array, the polarization-independent light-field images with a high image quality can be obtained in the arbitrary polarization state selected. We experimentally demonstrate characters including a relatively wide operation range in the manipulation of incident beams and the multiple imaging modes, such as conventional two-dimensional imaging, light-field imaging, and polarization imaging. Considering the obvious features of the TN-LCMLA, such as very low power consumption, providing multiple imaging modes mentioned, simple and low-cost manufacturing, the imaging micro-system integrated with this kind of liquid-crystal microstructure driven electrically presents the potential capability of directly observing a 3D object in typical scattering media.

摘要

光场成像是测量和分析周围光世界的一种关键且直接的方式。本文制作并展示了一种基于扭曲向列型液晶微透镜阵列(TN-LCMLA)的双偏振光场成像微系统,用于直接三维(3D)观测。该原型相机通过将TN-LCMLA与普通CMOS传感器阵列集成构建而成。通过切换TN-LCMLA的工作状态,两个正交偏振光场图像可通过功能成像传感器重新映射。结合电光微结构的成像微系统可用于同时进行偏振和光场成像。与使用液晶微透镜阵列的传统全光相机相比,在所选的任意偏振状态下都能获得具有高图像质量的与偏振无关的光场图像。我们通过实验证明了其特性,包括在入射光束操纵方面具有相对较宽的工作范围以及多种成像模式,如传统二维成像、光场成像和偏振成像。考虑到TN-LCMLA的明显特点,如极低功耗、提供上述多种成像模式、制造简单且成本低,与这种电驱动液晶微结构集成的成像微系统展现出在典型散射介质中直接观测三维物体的潜在能力。

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引用本文的文献

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