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Progress in updatable photorefractive polymer-based holographic displays via direct optical writing of computer-generated fringe patterns

机译:通过直接光学写入计算机生成的条纹图案,在可更新的基于光折变聚合物的全息显示器上的进展

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We have previously introduced an architecture for updatable photorefractive holographic display based around direct fringe writing of computer-generated holographic fringe patterns. In contrast to interference-based stereogram techniques for hologram exposure in photorefractive polymer (PRP) materials, the direct fringe writing architecture simplifies system design, reduces system footprint and cost, and offers greater affordances over the types of holographic images that can be recorded. In this paper, motivations and goals for employing a direct fringe writing architecture for photorefractive holographic imagers are reviewed, new methods for PRP exposure by micro-optical fields generated via spatial light modulation and telecentric optics are described, and resulting holographic images are presented and discussed. Experimental results are reviewed in the context of theoretical indicators for system performance.
机译:之前,我们已经基于计算机生成的全息条纹图案的直接条纹书写,介绍了一种可更新的光折射全息显示的体系结构。与在光折变聚合物(PRP)材料中全息图曝光的基于干扰的立体图技术相反,直接条纹书写体系结构简化了系统设计,减少了系统占地面积和成本,并为可记录的全息图像提供了更大的承受能力。本文综述了在光折射全息成像仪中采用直接条纹书写架构的动机和目标,描述了通过空间光调制和远心光学产生的微光场进行PRP曝光的新方法,并介绍了并讨论了所得的全息图像。实验结果在系统性能的理论指标范围内进行了回顾。

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