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Light-field camera based on a hexagonal array of nanostructured GRIN microlenses

机译:基于六边形纳米结构GRIN微透镜阵列的光场相机

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Summary form only given. We present a compact light-field camera built using a flat-surface gradient index (GRIN) microlenses array. First, we report on the design, fabrication and characterization of a hexagonal array of nanostructured GRIN microlenses suitable to build the camera. The concept of a nanostructured GRIN microlens is based on the effective medium theory. The nanostructured GRIN lens is composed of several hundred subwavelength rods made with the use of the stack-and draw technique, which was originally devised for fabrication of photonic crystal fibers [1]. A single GRIN microlens is fabricated from two different glasses, one with low and one with high refractive index value [2]. To develop a hexagonal array of nanostructured GRIN lenses we apply a modified stack-and-draw technique as a second step. The finally-formed element is made of 469 GRIN micro lenses, each 20 μm in the diameter, and is characterized by 100% fill factor. The flat-surface element is easy to integrate with other optical components.
机译:仅提供摘要表格。我们提出了使用平面梯度指数(GRIN)微透镜阵列构建的紧凑型光场相机。首先,我们报告适用于制造相机的纳米结构GRIN微透镜六边形阵列的设计,制造和表征。纳米结构的GRIN微透镜的概念基于有效介质理论。纳米结构的GRIN透镜由数百个亚波长棒组成,这些亚波长棒是使用堆叠和拉伸技术制成的,最初是为制造光子晶体光纤而设计的[1]。一个单一的GRIN微透镜是由两种不同的玻璃制成的,一种具有低折射率值,另一种具有高折射率值[2]。为了开发出六边形的纳米结构GRIN透镜阵列,我们将改进的叠拔技术用作第二步。最终形成的元件由469个GRIN微透镜制成,每个微透镜的直径为20μm,并具有100%的填充系数。平面元件易于与其他光学组件集成。

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