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Effect of spatial coherence of LED sources on image resolution in holographic displays

机译:LED源的空间相干性对全息显示器中图像分辨率的影响

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Holographic Displays (HDs) provide 3D images with all natural depth cues via computer generated holograms (CGHs) implemented on spatial light modulators (SLMs). HDs are coherent light processing systems based on interference and diffraction, thus they generally use laser light. However, laser sources are relatively expensive, available only at some particular wavelengths and difficult to miniaturize. In addition, highly coherent nature of laser light makes some undesired visual effects quite evident, such as speckle noise, interference due to stray light or defects of optical components. On the other hand, LED sources are available in variety of wavelengths, has small die size, and no speckle artifact. However, their finite spatial size introduce some degree of spatial incoherence in an HD system and degrade image resolution, which is the subject of the study in this paper. Our theoretical analysis indicates that the amount of resolution loss depends on the distance between hologram and SLM image planes. For some special configurations, the source size has no effect at all. We also performed experiments with different configurations using lasers and LEDs with different emission areas that vary from 50 u.m to 200 u.m, and determined Contrast Transfer Function (CTF) curves which agree well with our theoretical model. The results show that it is possible to find configurations where LEDs combined with pinholes almost preserve natural resolution limit of human eye while keeping the loss in light efficiency within tolerable limits.
机译:全息显示器(HD)通过在空间光调制器(SLM)上实现的计算机生成的全息图(CGH)提供具有所有自然深度提示的3D图像。 HD是基于干涉和衍射的相干光处理系统,因此它们通常使用激光。然而,激光源相对昂贵,仅在某些特定波长下可用,并且难以小型化。另外,激光的高度相干性使一些不希望有的视觉效果变得十分明显,例如斑点噪声,由于杂散光引起的干涉或光学组件的缺陷。另一方面,LED光源可用于各种波长,管芯尺寸小且无斑点伪影。但是,它们的有限空间尺寸在HD系统中引入了一定程度的空间不连贯性,并降低了图像分辨率,这是本文研究的主题。我们的理论分析表明,分辨率损失的数量取决于全息图和SLM图像平面之间的距离。对于某些特殊配置,源大小完全无效。我们还使用了不同配置的激光器和LED进行了不同配置的实验,这些激光器和LED的发射面积从50μm到200μm不等,并且确定的对比度传递函数(CTF)曲线与我们的理论模型非常吻合。结果表明,可以找到这样的配置,其中LED与针孔组合几乎可以保留人眼的自然分辨率极限,同时将光效率的损失保持在可容忍的极限之内。

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