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Ophthalmic compensation of visual ametropia based on a programmable diffractive lens

机译:基于可编程衍射镜头的视觉差异的眼科补偿

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Pixelated liquid crystal displays have been widely used as spatial light modulators to implement programmable diffractive optical elements (DOEs), particularly diffractive lenses. Many different applications of such components have been developed in information optics and optical processors that take advantage of their properties of great flexibility, easy and fast refreshment, and multiplexing capability in comparison with equivalent conventional refractive lenses. In this paper, we explore the application of programmable diffractive lenses displayed on the pixelated screen of a liquid crystal on silicon spatial light modulator (LCoS-SLM) to ophthalmic optics. In particular, we consider the use of programmable diffractive lenses for the visual compensation of some refractive errors (myopia, hyperopia). The theoretical principles of compensation are described and sketched using geometrical optics and paraxial ray tracing. A series of experiments with artificial eye in optical bench are conducted to analyze the compensation accuracy in terms of optical power and to compare the results with those obtained by means of conventional ophthalmic lenses. Practical considerations oriented to feasible applications are provided.
机译:像素化液晶显示器已被广泛用作空间光调制器,以实现可编程衍射光学元件(DO),特别是衍射透镜。这些组件的许多不同的应用已经在信息光学和光学处理器中开发,其利用其具有很大的灵活性,简单快速的次快,以及与等效传统折射镜头相比的多路复用能力。在本文中,我们探讨了在硅空间光调制器(LCOS-SLM)的液晶的像素化屏幕上显示的可编程衍射镜头的应用到眼科光学。特别是,我们考虑使用可编程衍射镜头,以便视觉补偿一些屈光误差(近视,远视)。使用几何光学和横射线跟踪来描述和绘制补偿的理论原理。在光学功率方面进行了一系列具有人工眼的人工眼实验,并将补偿精度分析,并将结果与​​常规眼科镜片获得的结果进行比较。提供了对可行应用的实际考虑因素。

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