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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Modeling the carbon nanofiber addressed liquid crystal microlens array from experimentally observed optical phenomena
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Modeling the carbon nanofiber addressed liquid crystal microlens array from experimentally observed optical phenomena

机译:从实验观察到的光学现象模拟碳纳米纤维寻址的液晶微透镜阵列

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摘要

This paper presents a novel method of using experimentally observed optical phenomena to reverse-engineer a model of the carbon nanofiber-addressed liquid crystal microlens array (C-MLA) using Zemax. It presents the first images of the optical profile for the C-MLA along the optic axis. The first working optical models of the C-MLA have been developed by matching the simulation results to the experimental results. This approach bypasses the need to know the exact carbon nanofiber-liquid crystal interaction and can be easily adapted to other systems where the nature of an optical device is unknown. Results show that the C-MLA behaves like a simple lensing system at 0.060-0.276 V/μm. In this lensing mode the C-MLA is successfully modeled as a reflective convex lens array intersecting with a flat reflective plane. The C-MLA at these field strengths exhibits characteristics of mostly spherical or low order aspheric arrays, with some aspects of high power aspherics. It also exhibits properties associated with varying lens apertures and strengths, which concur with previously theorized models based on E-field patterns. This work uniquely provides evidence demonstrating an apparent "rippling" of the liquid crystal texture at low field strengths, which were successfully reproduced using rippled Gaussian-like lens profiles.
机译:本文提出了一种使用实验观察到的光学现象对使用Zemax的碳纳米纤维寻址液晶微透镜阵列(C-MLA)进行反向工程的新方法。它沿光轴显示C-MLA的光学轮廓的第一张图像。通过将仿真结果与实验结果进行匹配,已开发出C-MLA的第一个工作光学模型。这种方法无需了解确切的碳纳米纤维与液晶的相互作用,并且可以轻松地应用于其他光学设备性质未知的系统。结果表明,C-MLA在0.060-0.276 V /μm的情况下就像一个简单的透镜系统。在这种透镜模式下,C-MLA成功地建模为与平面反射平面相交的反射凸透镜阵列。在这些场强下,C-MLA表现出大部分为球形或低阶非球面阵列的特性,以及高功率非球面的某些方面。它还具有与变化的镜头光圈和强度相关的属性,这与先前基于电场模式的理论模型一致。这项工作提供了独特的证据,证明在低场强下液晶纹理出现了明显的“涟漪”,这是使用波纹状的高斯状透镜轮廓成功复制的。

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