Effect of chromium doping on the correlated electronic structure of V2 O3

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Autor/in:
Erscheinungsjahr:
2014
Medientyp:
Text
Schlagworte:
  • Semiconductor insulator boundaries
  • Metal insulator boundaries
  • Metal-insulator transition
  • Secondary Batteries
  • Electric Batteries
  • Lithium Alloys
  • Semiconductor insulator boundaries
  • Metal insulator boundaries
  • Metal-insulator transition
  • Secondary Batteries
  • Electric Batteries
  • Lithium Alloys
Beschreibung:
  • The archetypical strongly correlated Mott-phenomena compound V2O3 is known to show a paramagnetic metal-insulator transition driven by doping with chromium atoms and/or (negative) pressure. Via charge self-consistent density-functional theory+dynamical mean-field theory calculations we demonstrate that these two routes cannot be understood as equivalent. An explicit description of Cr-doped V2O3 by means of supercell calculations and the virtual crystal approximation is performed. Introducing chromium's additional electron to the system is shown to modify the overall many-body electronic structure substantially. Chromium doping increases electronic correlations which in addition induce charge transfers between Cr and the remaining V ions. Thereby the transition-metal orbital polarization is increased by the electron doping, in close agreement with experimental findings.
Lizenz:
  • info:eu-repo/semantics/restrictedAccess
Quellsystem:
Forschungsinformationssystem der UHH

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oai:www.edit.fis.uni-hamburg.de:publications/27976fef-a0cb-4b2e-b40f-9c46a74b7186