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Graphene-based spatial light modulator operating at near infrared spectral range
Vera Marinova
*
,
Shiuan-Huei Lin
, Stefan Petrov
, Ming Syuan Chen
,
Yi-Hsin Lin
, Ken-Yuh Hsu
*
此作品的通信作者
電子物理學系
光電工程學系
研究成果
:
Article
›
同行評審
12
引文 斯高帕斯(Scopus)
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Keyphrases
Near-infrared
100%
Graphene-based Materials
100%
Spatial Light Modulator
100%
Near-infrared Spectrum
100%
Graphene
33%
Response Time
33%
Fabrication Methods
33%
Light Intensity
33%
Transmittance
33%
Liquid Crystal
33%
Voltage Dependence
33%
High Contrast Ratio
33%
Graphene Properties
33%
Video Image
33%
Electro-optic
33%
Photoinduced
33%
Birefringence
33%
Infrared Intensities
33%
High Transparency
33%
Graphene Layer
33%
Low Driving Voltage
33%
Photoconductivity
33%
Phase Retardation
33%
Doping Effect
33%
Graphene Conductivity
33%
High Conductivity
33%
ITO Electrode
33%
Reference Instrument
33%
Pump Light
33%
Bi12TiO20
33%
Ru-doped
33%
Charge Redistribution
33%
Mechanical Rubbing
33%
Light Modulation
33%
Photo-alignment Method
33%
Ability to Work
33%
Near-infrared Applications
33%
Optically Addressed Spatial Light Modulator
33%
Induced Space Charge
33%
Support Device
33%
Optical Doping
33%
Charge Exchange
33%
Engineering
Graphene
100%
Spectral Range
100%
Simplifies
20%
Response Time
20%
Retardation
20%
Contrast Ratio
20%
Voltage Driving
20%
Electro-Optics
20%
Space Charge
20%
Layer Graphene
20%
Pump Light
20%
Liquid Crystal
20%
Luminous Intensity
20%
Physics
Near Infrared
100%
Graphene
100%
Liquid Crystal
16%
Birefringence
16%
Electro-Optics
16%
Transmittance
16%
Luminous Intensity
16%
Light Modulation
16%
Space Charge
16%
Photoconductivity
16%
Material Science
Graphene
100%
Indium Tin Oxide
16%
Birefringence
16%
Photoconductivity
16%
Liquid Crystal
16%