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Athermally photoreduced graphene oxides for three-dimensional holographic images.


ABSTRACT: 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 ? 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.

SUBMITTER: Li X 

PROVIDER: S-EPMC4421811 | biostudies-other | 2015

REPOSITORIES: biostudies-other

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Athermally photoreduced graphene oxides for three-dimensional holographic images.

Li Xiangping X   Ren Haoran H   Chen Xi X   Liu Juan J   Li Qin Q   Li Chengmingyue C   Xue Gaolei G   Jia Jia J   Cao Liangcai L   Sahu Amit A   Hu Bin B   Wang Yongtian Y   Jin Guofan G   Gu Min M  

Nature communications 20150422


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 f  ...[more]

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