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Stabilization of Ferromagnetic States by Electron Doping in Fe-, Co- or Ni-Doped ZnO

Japanese Journal of Applied Physics · 2001 · Vol. 40(4A) · pp. L334–L334
Kazunori SatōHiroshi Katayama‐Yoshida

Abstract

Detailed guidelines for controlling magnetic states in ZnO-based diluted magnetic semiconductors are given based on ab initio electronic structure calculations within the local spin density approximation using the Korringa-Kohn-Rostoker method. Effects of disorder were taken into account by the coherent potential approximation. It was found that the ferromagnetic state was stabilized by electron doping in the case of Fe-, Co- or Ni-doped ZnO. From the view point of practical applications, it is possible to realize a high-Curie-temperature ferromagnet, because n -type ZnO is easily available.

ZnO doping and propertiesMagnetic and transport properties of perovskites and related materialsPhysics of Superconductivity and MagnetismFerromagnetismCurie temperatureCondensed matter physicsCoherent potential approximationDopingMagnetic semiconductorAb initioElectronMaterials scienceAb initio quantum chemistry methods
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References
Solution Using a Codoping Method to Unipolarity for the Fabrication of p-Type ZnO
Japanese Journal of Applied Physics · 1999 · 576 citations
p-Type Electrical Conduction in ZnO Thin Films by Ga and N Codoping
Japanese Journal of Applied Physics · 1999 · 567 citations
Material Design for Transparent Ferromagnets with ZnO-Based Magnetic Semiconductors
Japanese Journal of Applied Physics · 2000 · 1,103 citations
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