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Design and assessment of microlenslet-array relay optics

机译:微透镜阵列中继光学器件的设计和评估

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Recent progress in micro-optics fabrication and optical modeling software opens the opportunity to investigate how microlenslet-array-based compact relay systems can be designed and assessed. We present various optical configurations that include an appropriate baffle computation to eliminate ghost images, followed by an analysis of image quality. The investigation shows the existing trade-off between compactness of the system and a tiling effect observed in the corresponding image, an effect we refer to as lensletization. To yield meaningful optical modeling results, we provide insight into ray-tracing optimization while ensuring a sufficient signal-to-noise ratio. The results show that, given no discernable lensletization, the most compact configuration to image gray-scale images is the 5f-based system. Finally, simulations of the imaging of gray scale and color bitmaps through microlenslet arrays are demonstrated for the first time to our knowledge.
机译:微光学制造和光学建模软件的最新进展为研究如何设计和评估基于微透镜阵列的紧凑型中继系统提供了机会。我们介绍了各种光学配置,包括适当的挡板计算以消除重影,然后分析图像质量。调查显示,系统的紧凑性与在相应图像中观察到的平铺效果之间存在着权衡取舍,这种效果我们称为微透镜化。为了产生有意义的光学建模结果,我们在确保足够的信噪比的同时提供了射线跟踪优化的见解。结果表明,在没有可识别的微透镜化的情况下,用于成像灰度图像的最紧凑的配置是基于5f的系统。最后,我们首次了解了通过微透镜阵列对灰度和彩色位图成像的模拟。

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