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用于计算焦散显示的高效自由曲面透镜优化。

Efficient freeform lens optimization for computational caustic displays.

作者信息

Damberg Gerwin, Heidrich Wolfgang

出版信息

Opt Express. 2015 Apr 20;23(8):10224-32. doi: 10.1364/OE.23.010224.

Abstract

Phase-only light modulation shows great promise for many imaging applications, including future projection displays. While images can be formed efficiently by avoiding per-pixel attenuation of light most projection efforts utilizing phase-only modulators are based on holographic principles which rely on interference of coherent laser light and a Fourier lens. Limitations of this type of an approach include scaling to higher power as well as visible artifacts such as speckle and image noise. We propose an alternative approach: operating the spatial phase modulator with broadband illumination by treating it as a programmable freeform lens. We describe a simple optimization approach for generating phase modulation patterns or freeform lenses that, when illuminated by a collimated, broadband light source, will project a pre-defined caustic image on a designated image plane. The optimization procedure is based on a simple geometric optics image formation model and can be implemented computationally efficient. We perform simulations and show early experimental results that suggest that the implementation on a phase-only modulator can create structured light fields suitable, for example, for efficient illumination of a spatial light modulator (SLM) within a traditional projector. In an alternative application, the algorithm provides a fast way to compute geometries for static, freeform lens manufacturing.

摘要

仅相位光调制在许多成像应用中,包括未来的投影显示器,都显示出巨大的潜力。虽然通过避免光的逐像素衰减可以有效地形成图像,但大多数利用仅相位调制器的投影工作都基于全息原理,该原理依赖于相干激光和傅里叶透镜的干涉。这种方法的局限性包括扩展到更高功率以及出现诸如散斑和图像噪声等可见伪像。我们提出了一种替代方法:将空间相位调制器作为可编程自由形式透镜,用宽带照明来操作它。我们描述了一种简单的优化方法,用于生成相位调制图案或自由形式透镜,当用准直的宽带光源照明时,将在指定的图像平面上投射预定义的焦散图像。优化过程基于简单的几何光学成像模型,并且可以高效地通过计算实现。我们进行了模拟并展示了早期实验结果,这些结果表明在仅相位调制器上的实现可以创建适合例如传统投影仪内空间光调制器(SLM)高效照明的结构化光场。在另一种应用中,该算法为静态自由形式透镜制造提供了一种快速计算几何形状的方法。

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