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Coulomb drag in graphene near the dirac point
Michael Schuett
, P. M. Ostrovsky
, M. Titov
, I. V. Gornyi
, B. N. Narozhny
, A. D. Mirlin
Physics and Astronomy (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
59
Scopus citations
Overview
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Keyphrases
Graphene
100%
Dirac Point
100%
Coulomb Drag
100%
Drag Coefficient
66%
Low Temperature
33%
High-order
33%
Thermalization
33%
Scattering Processes
33%
Diffusion Regime
33%
Specific Mechanisms
33%
Electric Current
33%
Temperature-independent
33%
Perturbative Approach
33%
Energy Current
33%
Quantum Kinetic Equation
33%
Point-focusing
33%
Double-layer Graphene
33%
Engineering
Graphene
100%
Interlayer
66%
Drag Coefficient
66%
Low-Temperature
33%
Double Layer
33%
Layer Graphene
33%
Hydrodynamics
33%
Diffusive Regime
33%
Kinetic Equation
33%
Physics
Graphene
100%
Kinetic Equation
25%
Hydrodynamics
25%
Material Science
Graphene
100%
Hydrodynamics
25%
Chemical Engineering
Graphene
100%