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Diffractive optics in large sizes: computer-generated holograms (CGH) based on Bayfol~? HX photopolymer

机译:大尺寸的衍射光学器件:基于Bayfol的计算机生成全息图(CGH)? HX Photopolymer.

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Volume Holographic Optical Elements (vHOE) offer angular and spectral Bragg selectivity that can be tuned by film thickness and holographic recording conditions. With the option to integrate complex optical function in a very thin plastic layer formerly heavy refractive optics can be made thin and lightweight especially for large area applications like liquid crystal displays, projection screens or photovoltaic. Additionally their Bragg selectivity enables the integration of several completely separated optical functions in the same film. The new instant developing photopolymer film (Bayfol~? HX) paves the way towards new cost effective diffractive large optics, due to its easy holographic recording and environmental stability. A major bottleneck for large area applications has been the master hologram recording which traditionally needs expensive, large high precision optical equipment and high power laser with long coherence length. Further the recording setup needs to be rearranged for a change in optical design. In this paper we describe an alternative method for large area holographic master recording, using standard optics and low power lasers in combination with an x, y-translation stage. In this setup small sub-holograms generated by a phase only spatial light modulator (SLM) are recorded next to each other to generate a large size vHOE. The setup is flexible to generate various types of HOEs without the need of a change in the mechanical and optical construction by convenient SLM programming. One Application example and parameter studies for printed vHOEs based on Bayfol~? HX Photopolymer will be given.
机译:体积全息光学元件(VHOE)提供可通过膜厚度和全息记录条件调谐的角度和光谱布拉格选择性。随着在非常薄的塑料层中集成复杂光学功能的选项,可以使重型折射光学器件薄,特别是对于液晶显示器,投影筛或光伏等大面积应用。此外,它们的布拉格选择性使得能够在同一胶片中集成几种完全分离的光学功能。由于其易于全息记录和环境稳定性,新的瞬间开发光聚合物膜(Bayfol〜HX)铺平了新的成本效益衍射大型光学器件。大面积应用的主要瓶颈一直是主全息图记录,传统上需要昂贵,大的高精度光学设备和具有长相干长度的高功率激光。此外,需要重新排列记录设置以进行光学设计的变化。本文使用标准光学和低功率激光器与X,Y转换级组合使用标准光学和低功率激光来描述大面积全息主录制的替代方法。在该设置中,由阶段仅产生空间光调制器(SLM)的小子全息图彼此接近地记录以产生大尺寸的VHOE。设置是灵活的,可以通过方便的SLM编程产生各种类型的锄头,而无需通过机械和光学结构的变化。基于Bayfol的印刷VHOES的一个应用实例和参数研究〜?将给出HX光聚合物。

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