Publication | Open Access
Asymmetric “melting” and “freezing” kinetics of the magnetostructural phase transition in B2-ordered FeRh epilayers
28
Citations
33
References
2014
Year
Magnetic PropertiesEngineeringMagnetic MaterialsMagnetoresistanceMagnetismGeneric FreezingSuperconductivityAsymmetric “B2-ordered Ferh EpilayersMaterials SciencePhysicsPhase TransformationMagnetic MaterialCrystallographyMicrostructureFerromagnetismSynchrotron X-ray DiffractionNatural SciencesCondensed Matter PhysicsApplied PhysicsMagnetostructural Phase TransitionMagnetic PropertyAlloy Phase
Synchrotron X-ray diffraction was used to study the phase transformation processes during the magnetostructural transition in a B2-ordered FeRh (001)-oriented epilayer grown on MgO by sputtering. Out-of-plane lattice constant measurements within the hysteretic regime of the transition reveal a microstructure consistent with the coexistence of lattice-expanded and contracted phases in spatially distinct regions. It was found that the phase separation is more pronounced during cooling than heating. Furthermore, whilst lattice-expanded domains that span the height of the film can be undercooled by several kelvins, there is no equivalent superheating. This asymmetry between the cooling and heating processes in FeRh is consistent with the difference in the kinetics of generic freezing and melting transitions.
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