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Athermally photoreduced graphene oxides for three-dimensional holographic images

机译:用于三维全息图像的非热光还原氧化石墨烯

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摘要

The emerging graphene-based material, an atomic layer of aromatic carbon atoms with exceptional electronic and optical properties, has offered unprecedented prospects for developing flat two-dimensional displaying systems. Here, we show that reduced graphene oxide enabled write-once holograms for wide-angle and full-colour three-dimensional images. This is achieved through the discovery of subwavelength-scale multilevel optical index modulation of athermally reduced graphene oxides by a single femtosecond pulsed beam. This new feature allows for static three-dimensional holographic images with a wide viewing angle up to 52 degrees. In addition, the spectrally flat optical index modulation in reduced graphene oxides enables wavelength-multiplexed holograms for full-colour images. The large and polarization-insensitive phase modulation over pi in reduced graphene oxide composites enables to restore vectorial wavefronts of polarization discernible images through the vectorial diffraction of a reconstruction beam. Therefore, our technique can be leveraged to achieve compact and versatile holographic components for controlling light.
机译:新兴的基于石墨烯的材料是具有出色电子和光学特性的芳香族碳原子的原子层,为开发平面二维显示系统提供了空前的前景。在这里,我们显示了还原的氧化石墨烯可用于广角和全彩色三维图像的一次写入全息图。这是通过单个飞秒脉冲光束发现无热还原的石墨烯氧化物的亚波长尺度多级光学指数调制来实现的。这项新功能可生成静态静态三维全息图像,最大视角可达52度。此外,在还原的氧化石墨烯中进行光谱平坦的光学折射率调制,可以对全彩色图像进行波长复用的全息图。还原的氧化石墨烯复合材料中pi上的较大且对偏振不敏感的相位调制可通过重建光束的矢量衍射来恢复偏振可分辨图像的矢量波阵面。因此,可以利用我们的技术来实现紧凑而通用的全息组件以控制光。

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