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Temperature collapse of the electric conductivity in bilayer graphene
Mohammad Zarenia
, Shaffique Adam
, Giovanni Vignale
Department of Physics
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Scopus citations
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Keyphrases
Electric Conductivity
100%
Bilayer Graphene
100%
Suspended Lipid Bilayer
66%
Experiment Analysis
33%
Scattering Processes
33%
Solid Foundation
33%
Impurities
33%
Hydrodynamic Theory
33%
Gapless
33%
Band Gap
33%
Chemical Potential
33%
Electron-hole Puddles
33%
Charge Neutrality
33%
Charged Impurity Scattering
33%
Multi-band Systems
33%
Scattering Mechanism
33%
Electron-phonon
33%
Electron-phonon Scattering
33%
Electron-hole Scattering
33%
Chemistry
Graphene
100%
Electrical Conductivity
100%
Hole (Electron)
66%
Band Gap
33%
Chemical Potential
33%
Phonon
33%
Electron-Phonon Scattering
33%
Engineering
Graphene
100%
Electrical Conductivity
100%
Single Curve
66%
Chemical Potential
33%
Band Gap
33%
Hydrodynamic Theory
33%
Physics
Graphene
100%
Conductance
100%
Holes (Electron Deficiencies)
40%
Phonon
40%
Hydrodynamics
20%
Material Science
Electrical Conductivity
100%
Graphene
100%
Hydrodynamics
33%