Interfaces and low dimensionality are sources of strong modifications of electronic, structural, and magnetic properties of materials. FeRh alloys are an excellent example because of the first-order phase transition taking place at ~400K from an antiferromagnetic phase at room temperature to a high temperature ferromagnetic one. It is accompanied by a resistance change and volume expansion of about 1%. We have investigated the electronic and magnetic properties of FeRh(100) epitaxially grown on MgO by combining spectroscopies characterized by different probing depths, namely X-ray magnetic circular dichroism and photoelectron spectroscopy. We find that the symmetry breaking induced at the Rh-terminated surface stabilizes a surface ferromagn...
WOS:000370037800016International audienceWe report on the structural investigation of FeRh thin film...
FeRh is a unique alloy which shows temperature dependent phase transition magnetic properties. The l...
Alloy of iron-rhodium, Fe50Rh50, shows a low-temperature metamagnetic phase transition between its a...
Interfaces and low dimensionality are sources of strong modifications of electronic, structural, and...
Interfaces and low dimensionality are sources of strong modifications of electronic, structural, and...
Epitaxial FeRh(100) films (CsCl structure, ∼10 ML thick), prepared in situ on a W(100) single-crysta...
Properties of the phase transition in iron-rhodium (FeRh) from the antiferromagnetic (AF) to ferroma...
Exchange systems of FeRh with a hard magnetic layer are a promising approach for heat-assisted magne...
Equi-atomic FeRh is highly unusual in that it undergoes a rst order meta-magnetic phase transition ...
Equi-Atomic FeRh is highly unusual in that it undergoes a first order meta-magnetic phase transition...
Equi-Atomic FeRh is highly unusual in that it undergoes a first order meta-magnetic phase transition...
Equi-Atomic FeRh is highly unusual in that it undergoes a first order meta-magnetic phase transition...
Equi-Atomic FeRh is highly unusual in that it undergoes a first order meta-magnetic phase transition...
The surface magnetic domain structure of uncapped epitaxial FeRh/MgO(001) thin films was imaged by i...
Magneto-structural phase transition in FeRh epitaxial layers was studied optically. It is shown that...
WOS:000370037800016International audienceWe report on the structural investigation of FeRh thin film...
FeRh is a unique alloy which shows temperature dependent phase transition magnetic properties. The l...
Alloy of iron-rhodium, Fe50Rh50, shows a low-temperature metamagnetic phase transition between its a...
Interfaces and low dimensionality are sources of strong modifications of electronic, structural, and...
Interfaces and low dimensionality are sources of strong modifications of electronic, structural, and...
Epitaxial FeRh(100) films (CsCl structure, ∼10 ML thick), prepared in situ on a W(100) single-crysta...
Properties of the phase transition in iron-rhodium (FeRh) from the antiferromagnetic (AF) to ferroma...
Exchange systems of FeRh with a hard magnetic layer are a promising approach for heat-assisted magne...
Equi-atomic FeRh is highly unusual in that it undergoes a rst order meta-magnetic phase transition ...
Equi-Atomic FeRh is highly unusual in that it undergoes a first order meta-magnetic phase transition...
Equi-Atomic FeRh is highly unusual in that it undergoes a first order meta-magnetic phase transition...
Equi-Atomic FeRh is highly unusual in that it undergoes a first order meta-magnetic phase transition...
Equi-Atomic FeRh is highly unusual in that it undergoes a first order meta-magnetic phase transition...
The surface magnetic domain structure of uncapped epitaxial FeRh/MgO(001) thin films was imaged by i...
Magneto-structural phase transition in FeRh epitaxial layers was studied optically. It is shown that...
WOS:000370037800016International audienceWe report on the structural investigation of FeRh thin film...
FeRh is a unique alloy which shows temperature dependent phase transition magnetic properties. The l...
Alloy of iron-rhodium, Fe50Rh50, shows a low-temperature metamagnetic phase transition between its a...