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Material Design for Transparent Ferromagnets with ZnO-Based Magnetic Semiconductors

Japanese Journal of Applied Physics · 2000 · Vol. 39(6B) · pp. L555–L555
Kazunori SatōHiroshi Katayama‐Yoshida

Abstract

Ferromagnetism of ZnO-based magnetic semiconductors was investigated by ab initio calculations based on the local density approximation. In a system of Mn atom doped ZnO, the ferromagnetic ordering of Mn magnetic moments was induced by hole doping. It was also found that 3 d transition metal atoms of V, Cr, Fe, Co and Ni showed the ferromagnetic ordering of their magnetic moments in ZnO without any additional carrier doping treatments. Appearance of the ferromagnetism in these systems suggests possibility for a fabrication of a transparent ferromagnet which will have great impact on industrial applications in magneto optical devices.

ZnO doping and propertiesCopper-based nanomaterials and applicationsMagnetic properties of thin filmsFerromagnetismCondensed matter physicsMagnetic semiconductorDopingMaterials scienceMagnetic momentAtom (system on chip)SemiconductorAb initioTransition metal
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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
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