Publication | Closed Access
Large Negative Magnetic Contribution to the Thermal Expansion in Iron-Platinum Alloys: Quantitative Theory of the Invar Effect
96
Citations
14
References
2003
Year
EngineeringMagnetic ResonanceMagnetoresistanceMagnetismPyrochlore MagnetsMagnetohydrodynamicsThermodynamicsThermal Magnetic DisorderMaterials SciencePhysicsMetallurgical InteractionDisordered Local MomentInvar EffectMagnetic MaterialMicrostructureSpintronicsFerromagnetismNatural SciencesCondensed Matter PhysicsApplied PhysicsDisordered Quantum SystemDisordered MagnetismQuantitative TheoryMagnetic PropertyThermal Expansion
We show that the large negative magnetic contribution to the thermal expansion in disordered Fe-Pt alloys can be understood within the disordered local moment (DLM) approach. On the basis of first principles calculations we quantitatively describe the spontaneous volume magnetostriction for various Pt concentrations. It is found that the Invar effect in these alloys is entirely related to the state of thermal magnetic disorder modeled by the DLM states. We also show that the experimentally observed anomaly in the temperature dependence of the magnetization is due to a spontaneous reduction of the local magnetic moments rather than to "hidden excitations."
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