First-principles supercell calculations show that ferromagnetism in Fe-doped III-V semiconductors appears when the minority-spin e level becomes occupied, rather than from carrier-mediated s,p-d exchange.
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Densities of states in Fe-doped III-V semiconductors: a first-principles study
First-principles supercell calculations show that ferromagnetism in Fe-doped III-V semiconductors appears when the minority-spin e level becomes occupied, rather than from carrier-mediated s,p-d exchange.