PosterInternational audienceThe magnetization configuration in small La0.7Sr0.3MnO3 elements is investigated as a function of geometry, film thickness, magnetic field, and temperature using x-ray magnetic circular dichroism photoemission electron microscopy (XMCD-PEEM). The patterned elements were defined by focused ion beam (FIB) lithography, and consist of elements varying in shape (from circular, triangular and quadrangular) and size, from 200 nm up to 10 μm. A strong magnetic contrast is observed for all thicknesses (10-50 nm). The magnetic state in the larger elements tends to be multidomain, with complex configurations that are determined by the presence of local pinning sites. These pinning sites are overcome with increasing temperat...
We report on measurements of the spin configuration across ferromagnetic domains in La(0.325)Pr(0.3)...
We investigate the interplay between shape anisotropy and a stress-based uniaxial anisotropy on the ...
Spatially resolved analysis of magnetic properties on the nanoscale remains challenging, yet strain ...
PosterInternational audienceThe magnetization configuration in small La0.7Sr0.3MnO3 elements is inve...
International audienceThe evolution of the magnetization configurations in highly spin polarized La0...
The evolution of the magnetization configurations in highly spin polarized La0 7Sr0 3MnO3 LSMO th...
International audienceWe study the effect of magnetocrystalline anisotropy on the magnetic configura...
International audienceWe investigate the interplay between the governing magnetic energy terms in pa...
We investigate the interplay between the governing magnetic energy terms in patterned La0.7Sr0.3MnO3...
The mixed-valence manganite La0.7Sr0.3MnO3 (LSMO), in nanoscale configuration, is a strong candidate...
The domain configuration of 50 nm thick La0.7Sr0.3MnO3 films has been directly in-vestigated using s...
In this study, we report on the magnetic domain formation in ultrathin blanket films and patterned m...
When thin films are patterned to realize nanoscale device geometries, maintaining their structural i...
We investigate the interplay between shape anisotropy and a stress-based uniaxial anisotropy on the ...
Supermagnetism refers to the collective magnetic ordering of superparamagnetic nanoparticles. The ph...
We report on measurements of the spin configuration across ferromagnetic domains in La(0.325)Pr(0.3)...
We investigate the interplay between shape anisotropy and a stress-based uniaxial anisotropy on the ...
Spatially resolved analysis of magnetic properties on the nanoscale remains challenging, yet strain ...
PosterInternational audienceThe magnetization configuration in small La0.7Sr0.3MnO3 elements is inve...
International audienceThe evolution of the magnetization configurations in highly spin polarized La0...
The evolution of the magnetization configurations in highly spin polarized La0 7Sr0 3MnO3 LSMO th...
International audienceWe study the effect of magnetocrystalline anisotropy on the magnetic configura...
International audienceWe investigate the interplay between the governing magnetic energy terms in pa...
We investigate the interplay between the governing magnetic energy terms in patterned La0.7Sr0.3MnO3...
The mixed-valence manganite La0.7Sr0.3MnO3 (LSMO), in nanoscale configuration, is a strong candidate...
The domain configuration of 50 nm thick La0.7Sr0.3MnO3 films has been directly in-vestigated using s...
In this study, we report on the magnetic domain formation in ultrathin blanket films and patterned m...
When thin films are patterned to realize nanoscale device geometries, maintaining their structural i...
We investigate the interplay between shape anisotropy and a stress-based uniaxial anisotropy on the ...
Supermagnetism refers to the collective magnetic ordering of superparamagnetic nanoparticles. The ph...
We report on measurements of the spin configuration across ferromagnetic domains in La(0.325)Pr(0.3)...
We investigate the interplay between shape anisotropy and a stress-based uniaxial anisotropy on the ...
Spatially resolved analysis of magnetic properties on the nanoscale remains challenging, yet strain ...