A field-driven transformation of a domain pattern in a square micromagnet, defined in a thin film of La0.7Sr0.3MnO3, is discussed in terms of creation and annihilation of bulk vortices and edge-bound topological defects with half-integer winding numbers. The evolution of the domain pattern was mapped with soft x-ray photoemission electron microscopy and magnetic force microscopy. Micromagnetic modeling, permitting detailed analysis of the spin texture, accurately reproduces the measured domain state transformation. The simulations also helped stipulate the energy barriers associated with the creation and annihilation of the topological charges and thus to assess the stability of the domain states in this magnetic microstructure.publishedVer...
Perturbations in magnetically or electrically ordered materials can form stable defectsthat cannot b...
The magnetic stripe domains observed in the vicinity of the spin reorientation transition is a great...
International audienceThe evolution of the magnetization configurations in highly spin polarized La0...
A field-driven transformation of a domain pattern in a square micromagnet, defined in a thin film of...
Engineered topological spin textures with submicron dimensions in magnetic materials have emerged in...
Some of the best-performing high-temperature magnets are Sm–Co-based alloys with a microstructure th...
In this study, we report on the magnetic domain formation in ultrathin blanket films and patterned m...
A micromagnetic model of thin films with columnar microstructure in the form of a matrix with reduce...
We have studied the domain behavior of submicrometer wide ferromagnetic stripes by magnetic force mi...
The magnetic domains of embedded micromagnets with 2 μm×2 μm dimensions defined in epitaxial La0.7...
In nanopatterned thin film of soft-ferromagnetic materials, a flux-closure domain structure such as ...
Supermagnetism refers to the collective magnetic ordering of superparamagnetic nanoparticles. The ph...
We discuss elementary topological defects in soft magnetic nanoparticles in the thin-film geometry. ...
Contains fulltext : 71975.pdf (publisher's version ) (Open Access
The evolution of the magnetization configurations in highly spin polarized La0 7Sr0 3MnO3 LSMO th...
Perturbations in magnetically or electrically ordered materials can form stable defectsthat cannot b...
The magnetic stripe domains observed in the vicinity of the spin reorientation transition is a great...
International audienceThe evolution of the magnetization configurations in highly spin polarized La0...
A field-driven transformation of a domain pattern in a square micromagnet, defined in a thin film of...
Engineered topological spin textures with submicron dimensions in magnetic materials have emerged in...
Some of the best-performing high-temperature magnets are Sm–Co-based alloys with a microstructure th...
In this study, we report on the magnetic domain formation in ultrathin blanket films and patterned m...
A micromagnetic model of thin films with columnar microstructure in the form of a matrix with reduce...
We have studied the domain behavior of submicrometer wide ferromagnetic stripes by magnetic force mi...
The magnetic domains of embedded micromagnets with 2 μm×2 μm dimensions defined in epitaxial La0.7...
In nanopatterned thin film of soft-ferromagnetic materials, a flux-closure domain structure such as ...
Supermagnetism refers to the collective magnetic ordering of superparamagnetic nanoparticles. The ph...
We discuss elementary topological defects in soft magnetic nanoparticles in the thin-film geometry. ...
Contains fulltext : 71975.pdf (publisher's version ) (Open Access
The evolution of the magnetization configurations in highly spin polarized La0 7Sr0 3MnO3 LSMO th...
Perturbations in magnetically or electrically ordered materials can form stable defectsthat cannot b...
The magnetic stripe domains observed in the vicinity of the spin reorientation transition is a great...
International audienceThe evolution of the magnetization configurations in highly spin polarized La0...