paper

First-principles study of lattice instabilities in the ferromagnetic martensite NiMnGa

arXiv:cond-mat/0304349 · doi:10.1103/PhysRevB.68.134104

Abstract

The phonon dispersion relations and elastic constants for ferromagnetic NiMnGa in the cubic and tetragonally distorted Heusler structures are computed using density-functional and density-functional perturbation theory within the spin-polarized generalized-gradient approximation. For , the TA tranverse acoustic branch along and symmetry-related directions displays a dynamical instability at a wavevector that depends on . Through examination of the Fermi-surface nesting and electron-phonon coupling, this is identified as a Kohn anomaly. In the parent cubic phase the computed tetragonal shear elastic constant, C=(CC)/2, is close to zero, indicating a marginal elastic instability towards a uniform tetragonal distortion. We conclude that the cubic Heusler structure is unstable against a family of energy-lowering distortions produced by the coupling between a uniform tetragonal distortion and the corresponding modulation. The computed relation between the ratio and the modulation wavevector is in excellent agreement with structural data on the premartensitic ( = 1) and martensitic ( = 0.94) phases of NiMnGa.

submitted to Phys. Rev. B