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Hot Carrier-Assisted Intrinsic Photoresponse in Graphene
by
Nair, Nityan L.
, Ma, Qiong
, Taniguchi, Takashi
, Jarillo-Herrero, Pablo
, Song, Justin C. W.
, Levitov, Leonid S.
, Gabor, Nathaniel M.
, Taychatanapat, Thiti
, Watanabe, Kenji
in
Applied sciences
/ Biophysics
/ Carrier transport
/ Carriers
/ Charge carriers
/ Charge density
/ Circuit properties
/ Compound structure devices
/ Cooling
/ Density
/ Density dependence
/ Devices
/ Electric current
/ Electric potential
/ electric power
/ Electric, optical and optoelectronic circuits
/ Electronics
/ Electrons
/ Energy
/ Energy. Thermal use of fuels
/ Exact sciences and technology
/ Graphene
/ Harvesting
/ Integrated optoelectronics. Optoelectronic circuits
/ Lasers
/ Materials science
/ Nonmonotonic logic
/ Optical and optoelectronic circuits
/ Optoelectronic devices
/ Photovoltages
/ Photovoltaics
/ Pn junctions
/ Rational use of energy: conservation and recovery of energy
/ Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
/ Silicon
/ Solar energy
/ Thermoelectricity
/ wavelengths
2011
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Hot Carrier-Assisted Intrinsic Photoresponse in Graphene
by
Nair, Nityan L.
, Ma, Qiong
, Taniguchi, Takashi
, Jarillo-Herrero, Pablo
, Song, Justin C. W.
, Levitov, Leonid S.
, Gabor, Nathaniel M.
, Taychatanapat, Thiti
, Watanabe, Kenji
in
Applied sciences
/ Biophysics
/ Carrier transport
/ Carriers
/ Charge carriers
/ Charge density
/ Circuit properties
/ Compound structure devices
/ Cooling
/ Density
/ Density dependence
/ Devices
/ Electric current
/ Electric potential
/ electric power
/ Electric, optical and optoelectronic circuits
/ Electronics
/ Electrons
/ Energy
/ Energy. Thermal use of fuels
/ Exact sciences and technology
/ Graphene
/ Harvesting
/ Integrated optoelectronics. Optoelectronic circuits
/ Lasers
/ Materials science
/ Nonmonotonic logic
/ Optical and optoelectronic circuits
/ Optoelectronic devices
/ Photovoltages
/ Photovoltaics
/ Pn junctions
/ Rational use of energy: conservation and recovery of energy
/ Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
/ Silicon
/ Solar energy
/ Thermoelectricity
/ wavelengths
2011
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Hot Carrier-Assisted Intrinsic Photoresponse in Graphene
by
Nair, Nityan L.
, Ma, Qiong
, Taniguchi, Takashi
, Jarillo-Herrero, Pablo
, Song, Justin C. W.
, Levitov, Leonid S.
, Gabor, Nathaniel M.
, Taychatanapat, Thiti
, Watanabe, Kenji
in
Applied sciences
/ Biophysics
/ Carrier transport
/ Carriers
/ Charge carriers
/ Charge density
/ Circuit properties
/ Compound structure devices
/ Cooling
/ Density
/ Density dependence
/ Devices
/ Electric current
/ Electric potential
/ electric power
/ Electric, optical and optoelectronic circuits
/ Electronics
/ Electrons
/ Energy
/ Energy. Thermal use of fuels
/ Exact sciences and technology
/ Graphene
/ Harvesting
/ Integrated optoelectronics. Optoelectronic circuits
/ Lasers
/ Materials science
/ Nonmonotonic logic
/ Optical and optoelectronic circuits
/ Optoelectronic devices
/ Photovoltages
/ Photovoltaics
/ Pn junctions
/ Rational use of energy: conservation and recovery of energy
/ Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
/ Silicon
/ Solar energy
/ Thermoelectricity
/ wavelengths
2011
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Journal Article
Hot Carrier-Assisted Intrinsic Photoresponse in Graphene
2011
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Overview
We report on the intrinsic optoelectronic response of high-quality dual-gated monolayer and bilayer graphene p-n junction devices. Local laser excitation (of wavelength 850 nanometers) at the p-n interface leads to striking six-fold photovoltage patterns as a function of bottom-and top-gate voltages. These patterns, together with the measured spatial and density dependence of the photoresponse, provide strong evidence that nonlocal hot carrier transport, rather than the photovoltaic effect, dominates the intrinsic photoresponse in graphene. This regime, which features a long-lived and spatially distributed hot carrier population, may offer a path to hot carrier-assisted thermoelectric technologies for efficient solar energy harvesting.
Publisher
American Association for the Advancement of Science,The American Association for the Advancement of Science
Subject
/ Carriers
/ Cooling
/ Density
/ Devices
/ Electric, optical and optoelectronic circuits
/ Energy
/ Energy. Thermal use of fuels
/ Exact sciences and technology
/ Graphene
/ Integrated optoelectronics. Optoelectronic circuits
/ Lasers
/ Optical and optoelectronic circuits
/ Rational use of energy: conservation and recovery of energy
/ Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
/ Silicon
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