Calculated electronic and magnetic properties of the half-metallic, transition metal based Heusler compounds

Unknown author(s)

Journal of Physics D Applied Physics · 2007 · 804 citations · 75 references

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TL;DR

This class of materials includes interesting half‑metallic and ferromagnetic properties. The study presents ab‑initio band‑structure calculations for A₂BC Heusler compounds to understand their minority band gap and peculiar magnetic behavior. The calculations employ ab‑initio methods to analyze the electronic structure, highlighting contributions from both A and B atoms to states near the Fermi energy and to the total magnetic moment. The total magnetic moment follows Slater‑Pauling behavior and depends on the C atom, with localized moments at the B site and significant contributions from A atoms in Co₂, Fe₂, and Mn₂ compounds.

Abstract

In this work, results of {\it ab-initio} band structure calculations for $A_2BC$ Heusler compounds that have $A$ and $B$ sites occupied by transition metals and $C$ by a main group element are presented. This class of materials includes some interesting half-metallic and ferromagnetic properties. The calculations have been performed in order to understand the properties of the minority band gap and the peculiar magnetic behavior found in these materials. Among the interesting aspects of the electronic structure of the materials are the contributions from both $A$ and $B$ atoms to states near the Fermi energy and to the total magnetic moment. The magnitude of the total magnetic moment, which depends as well on the kind of $C$ atoms, shows a trend consistent with the Slater-Pauling type behavior in several classes of these compounds. The localized moment in these magnetic compounds resides at the $B$ site. Other than in the classical Cu$_2$-based Heusler compounds, the $A$ atoms in Co$_2$, Fe$_2$, and Mn$_2$ based compounds may contribute pronounced to the total magnetic moment.

References

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