Epitaxial films of Fe25Pt75 have a number of different magnetic phases as a function of temperature and chemical order. For example, chemically ordered epitaxial films have two distinct antiferromagnetic phases at temperatures below similar to 160 K and exhibit paramagnetism above that temperature. In sharp contrast, chemically disordered epitaxial films are ferromagnetic with a Curie temperature that is greater than 400 K. It is demonstrated that by varying the substrate temperature during growth, epitaxial films with varying degrees of chemical order can be produced and it is possible to produce an alloy with the same composition throughout the film with a modified magnetic structure. The authors used polarized neutron reflectivity to gau...
Spin-polarised neutron reflection is used to determine the magnetisation of ultrathin epitaxial fcc ...
The magnetic properties of epitaxial Fe films on GaAs in the range of the first few monolayers have ...
Abstract The magnetic properties of ultrathin Fe 100 films were investigated by Polarized Neut...
[[abstract]]The thickness, interface roughness, electronic structure, and magnetic moment of thin ma...
The temperature-dependent magnetic structure of a 200 nm thick single-crystalline film of Fe50Pt40Rh...
R. F. C. Farrow...et al.The structural and magnetic properties of 1000-Å-thick epitaxial Fex Pt12x ...
WOS:000370037800016International audienceWe report on the structural investigation of FeRh thin film...
We have grown 1 to 10 ML thick films of Fe on the (100)-surfaces of Cu and Ag and determined their m...
The temperature-dependent magnetic structure of a 200 nm thick single-crystalline film of Fe50Pt40Rh...
A review of the existing theories of epitaxy is given and it is emphasised that the temperature at w...
L10 FePt- and Fe-related alloys such as FePtRh, FeRh and FeRhPd have been studied for the high magne...
The epitaxial growth and the electronic and magnetic properties of bcc-Fe on Ag(100) and fcc-Co on C...
Fe50Pt50–xPdx (at. %, x = 0, 12.5, 25, 37.5, 50) alloy epitaxial films are prepared on MgO(001) subs...
Fe50Pt50–xPdx (at. %, x = 0, 12.5, 25, 37.5, 50) alloy epitaxial films are prepared on MgO(001) subs...
Fe50Pt50–xPdx (at. %, x = 0, 12.5, 25, 37.5, 50) alloy epitaxial films are prepared on MgO(001) subs...
Spin-polarised neutron reflection is used to determine the magnetisation of ultrathin epitaxial fcc ...
The magnetic properties of epitaxial Fe films on GaAs in the range of the first few monolayers have ...
Abstract The magnetic properties of ultrathin Fe 100 films were investigated by Polarized Neut...
[[abstract]]The thickness, interface roughness, electronic structure, and magnetic moment of thin ma...
The temperature-dependent magnetic structure of a 200 nm thick single-crystalline film of Fe50Pt40Rh...
R. F. C. Farrow...et al.The structural and magnetic properties of 1000-Å-thick epitaxial Fex Pt12x ...
WOS:000370037800016International audienceWe report on the structural investigation of FeRh thin film...
We have grown 1 to 10 ML thick films of Fe on the (100)-surfaces of Cu and Ag and determined their m...
The temperature-dependent magnetic structure of a 200 nm thick single-crystalline film of Fe50Pt40Rh...
A review of the existing theories of epitaxy is given and it is emphasised that the temperature at w...
L10 FePt- and Fe-related alloys such as FePtRh, FeRh and FeRhPd have been studied for the high magne...
The epitaxial growth and the electronic and magnetic properties of bcc-Fe on Ag(100) and fcc-Co on C...
Fe50Pt50–xPdx (at. %, x = 0, 12.5, 25, 37.5, 50) alloy epitaxial films are prepared on MgO(001) subs...
Fe50Pt50–xPdx (at. %, x = 0, 12.5, 25, 37.5, 50) alloy epitaxial films are prepared on MgO(001) subs...
Fe50Pt50–xPdx (at. %, x = 0, 12.5, 25, 37.5, 50) alloy epitaxial films are prepared on MgO(001) subs...
Spin-polarised neutron reflection is used to determine the magnetisation of ultrathin epitaxial fcc ...
The magnetic properties of epitaxial Fe films on GaAs in the range of the first few monolayers have ...
Abstract The magnetic properties of ultrathin Fe 100 films were investigated by Polarized Neut...