The temperature-dependent magnetic structure of a 200 nm thick single-crystalline film of Fe50Pt40Rh10 was studied by unpolarized and polarized neutron diffractions. By applying structure factor calculations, a detailed model of the magnetic unit cell was developed. In contrast to former studies on bulk samples, our experimental results show that the film remains in an antiferromagnetic state throughout the temperature range of 10–450 K. Remarkably, it can be demonstrated that the antiferromagnetic structure undergoes a smooth transition from a dominant out-of-plane order with the magnetic moments orientated in-plane to an in-plane order with the magnetic moments orientated perpendicular to the film plane. Theoretically this can be explaine...
L10 FePt- and Fe-related alloys such as FePtRh, FeRh and FeRhPd have been studied for the high magne...
Neutrons have different scattering cross-sections for the isotopes of an element. Also, they interac...
WOS:000370037800016International audienceWe report on the structural investigation of FeRh thin film...
The temperature-dependent magnetic structure of a 200 nm thick single-crystalline film of Fe50Pt40Rh...
Polarized and unpolarized neutron diffraction techniques have been applied to study the temperature-...
Epitaxial films of Fe25Pt75 have a number of different magnetic phases as a function of temperature ...
Using unpolarized neutron diffraction the magnetic structure of 30?nm thick Cr(1?1?0) films of a V/C...
We have undertaken a systematic study of the influence of in-plane crystalline quality of the antife...
Field-dependent polarized neutron reflectivity (PNR) and magnetometry are employed to study the magn...
We have undertaken a systematic study of the influence of in-plane crystalline quality of the antife...
Field-dependent polarized neutron reflectivity (PNR) and magnetometry are employed to study the magn...
Using neutron diffraction, we measured the sizes of antiferromagnetic domains in three ferromagnet/a...
Tetragonal CuMnAs is an antiferromagnetic material with favourable properties for applications in sp...
The long-accepted magnetic structure of FePS3 has recently been refuted through extensive powder neu...
Tetragonal CuMnAs is an antiferromagnetic material with favourable properties for applications in sp...
L10 FePt- and Fe-related alloys such as FePtRh, FeRh and FeRhPd have been studied for the high magne...
Neutrons have different scattering cross-sections for the isotopes of an element. Also, they interac...
WOS:000370037800016International audienceWe report on the structural investigation of FeRh thin film...
The temperature-dependent magnetic structure of a 200 nm thick single-crystalline film of Fe50Pt40Rh...
Polarized and unpolarized neutron diffraction techniques have been applied to study the temperature-...
Epitaxial films of Fe25Pt75 have a number of different magnetic phases as a function of temperature ...
Using unpolarized neutron diffraction the magnetic structure of 30?nm thick Cr(1?1?0) films of a V/C...
We have undertaken a systematic study of the influence of in-plane crystalline quality of the antife...
Field-dependent polarized neutron reflectivity (PNR) and magnetometry are employed to study the magn...
We have undertaken a systematic study of the influence of in-plane crystalline quality of the antife...
Field-dependent polarized neutron reflectivity (PNR) and magnetometry are employed to study the magn...
Using neutron diffraction, we measured the sizes of antiferromagnetic domains in three ferromagnet/a...
Tetragonal CuMnAs is an antiferromagnetic material with favourable properties for applications in sp...
The long-accepted magnetic structure of FePS3 has recently been refuted through extensive powder neu...
Tetragonal CuMnAs is an antiferromagnetic material with favourable properties for applications in sp...
L10 FePt- and Fe-related alloys such as FePtRh, FeRh and FeRhPd have been studied for the high magne...
Neutrons have different scattering cross-sections for the isotopes of an element. Also, they interac...
WOS:000370037800016International audienceWe report on the structural investigation of FeRh thin film...