A Study on the Anti-Reflection Coating Effects of Polymer Eyeglasses Lens

Ki-Chul Kim
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引用次数: 2

Abstract

Reducing optical reflection in the visible light range, in order to increase the share of transmitted light and avoid the formation of ghost images in imaging, is important for polymer lens applications. In this study, polymer lenses with refractive indices of n=1.56, 1.60, and 1.67 were fabricated by the injection-molding method with a polymer lens monomer, dibutyltin dichloride as the catalyst and an alkyl phosphoric ester as the release agent. To investigate their anti-reflection (AR) effects, various AR coating structures, viz. a multi-layer AR coating structure, tri-layer AR coating structure with a discrete approximation Gaussian gradient-index profile, and tri-layer AR coating structure with a quarter-wavelength approximation, were designed and coated on the polymer lens by an E-beam evaporation system. The optical properties of the polymer lenses were characterized by UV-visible spectrometry. The material properties of the thin films, refractive index and surface roughness, were analyzed by ellipsometry and AFM, respectively. The most effective AR coating structure of the polymer lens with low refractive index, n=1.56, was the both side coating of multi-layer AR coating structure. However, both side coating of the tri-layered discrete approximation Gaussian gradient-index profile AR coating structure gave comparable results to the both side coating of the multi-layer AR coating structure for the polymer lens with a high refractive index of n=1.67.
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高分子眼镜镜片增透镀膜效果的研究
减少可见光范围内的光学反射,以增加透射光的份额,避免成像中鬼像的形成,对聚合物透镜的应用具有重要意义。本研究以聚合物透镜单体为原料,以二氯化二丁基锡为催化剂,烷基磷酸酯为脱模剂,采用注射成型法制备了折射率分别为n=1.56、1.60、1.67的聚合物透镜。为了研究其增透效果,设计了多种增透膜结构,即多层增透膜结构、离散近似高斯梯度折射率分布的三层增透膜结构和四分之一波长近似的三层增透膜结构,并利用电子束蒸发系统将其涂覆在聚合物透镜上。用紫外可见光谱法对聚合物透镜的光学性质进行了表征。利用椭偏仪和原子力显微镜分别分析了薄膜的折射率和表面粗糙度。低折射率聚合物透镜最有效的AR涂层结构为多层AR涂层结构的双面涂层,n=1.56。然而,对于高折射率n=1.67的聚合物透镜,三层离散近似高斯梯度折射率剖面AR涂层结构的两侧涂层与多层AR涂层结构的两侧涂层效果相当。
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