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具有可变厚度膜的非球面液体透镜的表面轮廓分析。

Surface profiling of an aspherical liquid lens with a varied thickness membrane.

作者信息

Ding Zengqian, Wang Chinhua, Hu Zhixiong, Cao Zhenggang, Zhou Zhen, Chen Xiangyu, Chen Hongyu, Qiao Wen

出版信息

Opt Express. 2017 Feb 20;25(4):3122-3132. doi: 10.1364/OE.25.003122.

Abstract

Inspired by crystalline lenses in human eyes, liquid lenses have a simple yet elegant working principle, and result in compact optical systems. Recent numerical studies showed that membranes with variable thicknesses could affect the lens profile. However, fabrication and assembly of a liquid lens with an inhomogeneous membrane is difficult. There is also a lack of experimental studies about the changes of a lens profile during deformation. In this paper, we provided a new experimental approach for characterizing the performance of a liquid lens with an inhomogeneous membrane. A 2D axisymmetric lens model was built in finite element analysis software to theoretically study the non-linear deformation behavior of the inhomogeneous membrane. Then we provided a new approach to fabricate inhomogeneous membranes using a pre-machined aluminum mold. An optical coherence tomography (OCT) system was used to dynamically measure the changes of a lens profile without contact. Both simulation and the experiments indicated that the variation of the thickness of the membrane could affect the lens profile in a predictable manner. A negative conic constant was achieved when a plano-concave membrane was adopted in a liquid lens. Larger increments of the thickness of the membrane in the radial direction resulted in a larger contribution of a conic constant to the lens profile. The presented study offers guidance for image-quality analysis and optimization of a liquid-lens-based optical system.

摘要

受人类眼睛中晶状体的启发,液体透镜具有简单而优雅的工作原理,并能实现紧凑的光学系统。最近的数值研究表明,厚度可变的膜会影响透镜轮廓。然而,制造和组装具有不均匀膜的液体透镜很困难。关于透镜在变形过程中轮廓变化的实验研究也很缺乏。在本文中,我们提供了一种新的实验方法来表征具有不均匀膜的液体透镜的性能。在有限元分析软件中建立了二维轴对称透镜模型,以从理论上研究不均匀膜的非线性变形行为。然后,我们提供了一种使用预加工铝模具制造不均匀膜的新方法。利用光学相干断层扫描(OCT)系统动态地、非接触地测量透镜轮廓的变化。模拟和实验均表明,膜厚度的变化能够以可预测的方式影响透镜轮廓。当在液体透镜中采用平凹膜时,可得到负二次常数。膜在径向上厚度的增量越大,二次常数对透镜轮廓的贡献就越大。本研究为基于液体透镜的光学系统的图像质量分析和优化提供了指导。

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