论文标题

光学成分的流体塑形

Fluidic Shaping of Optical Components

论文作者

Frumkin, Valeri, Bercovici, Moran

论文摘要

当前制造镜头的方法依赖于晶状体或霉菌的机械处理,例如研磨,加工和抛光。这些制造过程的复杂性和所需的专业设备禁止光学组件的快速原型制作。这项工作提出了一种简单的方法,基于液体量的自由能量最小化,该方法可以快速将可固化的液体塑造成各种球形和非球形光学组件,而无需进行任何机械处理。获得所需的形状后,可以固化液体以产生具有纳米表面质量的固体物体。我们提供了一个理论模型,可以准确预测光学成分的形状,并证明了所有类型的球形透镜(凸,凹形,半月板),圆柱形透镜,双焦点透镜,环形透镜,双镜,Doumplet透镜和亚球镜片的快速制造。该方法价格便宜,可以使用具有不同光学和机械性能的多种可固化液体实施。此外,该方法是规模不变的,可用于生成非常大的光学组件,而制造时间没有显着增加。我们认为,在不需要复杂且昂贵的基础架构的情况下轻松,快速创建高质量光学的能力将为研究人员提供用于制造和测试光学设计的新的负担得起的工具。

Current methods for fabricating lenses rely on mechanical processing of the lens or mold, such as grinding, machining, and polishing. The complexity of these fabrication processes and the required specialized equipment prohibit rapid prototyping of optical components. This work presents a simple method, based on free-energy minimization of liquid volumes, which allows to quickly shape curable liquids into a wide range of spherical and aspherical optical components, without the need for any mechanical processing. After the desired shape is obtained, the liquid can be cured to produce a solid object with nanometric surface quality. We provide a theoretical model that accurately predicts the shape of the optical components, and demonstrate rapid fabrication of all types of spherical lenses (convex, concave, meniscus), cylindrical lenses, bifocal lenses, toroidal lenses, doublet lenses and aspheric lenses. The method is inexpensive and can be implemented using a variety of curable liquids with different optical and mechanical properties. In addition, the method is scale-invariant and can be used to produce even very large optical components, without a significant increase in fabrication time. We believe that the ability to easily and rapidly create high-quality optics, without the need for complex and expensive infrastructure, will provide researchers with new affordable tools for fabricating and testing optical designs.

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