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Exciton condensation and perfect Coulomb drag
D. Nandi
, A. D.K. Finck
, J. P. Eisenstein
,
L. N. Pfeiffer
, K. W. West
Electrical and Computer Engineering
Princeton Quantum Initiative
Research output
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Contribution to journal
›
Article
›
peer-review
196
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Scopus citations
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Keyphrases
Coulomb Drag
100%
Exciton Condensation
100%
Quantum Well
66%
Electrical Engineering
33%
Taking Care
33%
Tunneling
33%
Repulsive Interaction
33%
Voltage Drop
33%
Double Quantum Well
33%
Closed Circuit
33%
Zero Frequency
33%
Coulomb Interaction
33%
Net Current
33%
Engineering Perspective
33%
Drive Current
33%
Electron-hole Pair
33%
Spatially Separated
33%
Current Flow
33%
Strong Electronic Correlations
33%
Drag Measurement
33%
Drag Current
33%
Electrical Transformer
33%
Transport Current
33%
Quantum Well System
33%
Exciton Condensate
33%
Engineering
Quantum Well
100%
Condensation
100%
Electrical Engineering
33%
Tunnel Construction
33%
Voltage Drop
33%
Repulsive Interaction
33%
Zero Frequency
33%
Coulomb Interaction
33%
Hole Pair
33%
Closed Circuit
33%
Current Drive
33%
Physics
Exciton
100%
Quantum Wells
100%
Condensation
100%
Transportation
66%
Holes (Electron Deficiencies)
33%
Drag Measurement
33%
Electrical Engineering
33%
Material Science
Conductor
100%
Quantum Well
75%
Electronic Circuit
50%