Spin-polarization and electronic properties of half-metallic Heusler alloys calculated from first-principles
arXiv:cond-mat/0610827 · doi:10.1088/0953-8984/19/31/315213
Abstract
Half-metallic Heusler alloys are amongst the most promising materials for future magnetoelectronic applications. We review some recent results on the electronic properties of these compounds. The origin of the gap in these half-metallic alloys and its connection to the magnetic properties are well understood. Changing the lattice parameter shifts slightly the Fermi level. Spin-orbit coupling induces states within the gap but the alloys keep a very high degree of spin-polarization at the Fermi level. Small degrees of doping and disorder as well as defects with low formation energy have little effect on the properties of the gap, while temperature effects can lead to a quick loss of half-metallicity. Finally we discuss two special issues; the case of quaternary Heusler alloys and the half-metallic ferrimagnets.
References in corpus (3)
Cited by in corpus (4)
- Half-metallic ferromagnets: From band structure to many-body effects
- Role of the conduction electrons in mediating exchange interactions in Heusler alloys
- Antiferromagnetism in Ru2MnZ (Z=Sn, Sb, Ge, Si) full Heusler alloys: effects of magnetic frustration and chemical disorder
- Role of defects and disorder in the half-metallic full-Heusler compounds