Magnetism: the Driving Force of Order in CoPt. A First-Principles Study
arXiv:1204.5845 · doi:10.1088/0953-8984/25/5/056005
Abstract
CoPt or FePt equiatomic alloys order according to the tetragonal L10 structure which favors their strong magnetic anisotropy. Conversely magnetism can influence chemical ordering. We present here {\it ab initio} calculations of the stability of the L10 and L12 structures of Co-Pt alloys in their paramagnetic and ferromagnetic states. They show that magnetism strongly reinforces the ordering tendencies in this system. A simple tight-binding analysis allows us to account for this behavior in terms of some pertinent parameters.
References in corpus (1)
Cited by in corpus (4)
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- Testing Predictions from Density Functional Theory at Finite Temperatures: -Like Ground States in Co-Pt
- Giant perpendicular magnetic anisotropy energies in CoPt thin films: Impact of reduced dimensionality and imperfections
- Simulation of thermodynamic properties of magnetic transition metals from an efficient tight-binding model