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使用微透镜阵列屏幕减少激光投影中的散斑。

Speckle reduction in laser projection using microlens-array screens.

作者信息

Pauwels Jaël, Verschaffelt Guy

出版信息

Opt Express. 2017 Feb 20;25(4):3180-3195. doi: 10.1364/OE.25.003180.

Abstract

We report on a novel speckle reduction scheme using microlens arrays as screen material for application in laser-based projection systems. The scheme is based on properly adjusting the coherence properties on the screen: when the coherence area on the microlens-array screen is smaller than the microlens footprint, there is no interference between the fields emitted by the different microlenses and as a result no speckle is formed. We measured and modelled the speckle properties of microlens arrays with regular and irregular structure and lens sizes, and also a paper screen for comparison. In the experiments, we tune the laser beam's spatial coherence by sending it through a rotating diffuser. We show the amount of speckle reduction that can be achieved, which mechanisms influence the observed speckle contrast and we discuss the limitations due to increased non-uniformity in the projected image.

摘要

我们报道了一种新颖的散斑减少方案,该方案使用微透镜阵列作为屏幕材料,应用于基于激光的投影系统。该方案基于在屏幕上适当调整相干特性:当微透镜阵列屏幕上的相干区域小于微透镜的尺寸时,不同微透镜发出的场之间不会发生干涉,因此不会形成散斑。我们测量并模拟了具有规则和不规则结构、不同透镜尺寸的微透镜阵列以及用于比较的纸质屏幕的散斑特性。在实验中,我们通过让激光束穿过旋转扩散器来调节其空间相干性。我们展示了可以实现的散斑减少量,哪些机制会影响观察到的散斑对比度,并讨论了由于投影图像中不均匀性增加而带来的局限性。

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