In the highly strained system Fe/W(001) the formation of parallel dislocation bundles upon nucleation of fifth layer islands is used to locally break the fourfold symmetry. The uniaxial strain relief in the dislocation bundles introduces strong uniaxial in-plane magnetic anisotropies. By controlling the density of fifth layer islands local magnetic anisotropies are structured on the nanometer scale. As a result of this patterning of anisotropies, the magnetic properties of the films are drastically altered. As a function of the pattern size, the coercivity of the films can be varied in a controlled way over more than two orders of magnitude without changing the film thickness. For pattern sizes larger than the estimated domain wall width, M...
We demonstrate how shape-induced strain can be used to control antiferromagnetic order in NiO/Pt thi...
Mechanical stress due to a misfit between a thin film and its substrate induces strains which can st...
Ion sculpting of ultrathin Fe/Ag(001) films induces the self-assembled formation of nanometric surfa...
Nanoscale modifications of strain and magnetic anisotropy can open pathways to engineering magnetic ...
The ‘atomic saw' method, initially developed for semiconductor heterostructures, has been successful...
Since faceted surfaces lower the dimensionality of the surface, they are an ideal template to nanost...
Since faceted surfaces lower the dimensionality of the surface, they are an ideal template to nanost...
The patterning-induced changes in the magnetic anisotropy and hysteresis of epitaxial (100)-oriented...
International audienceWe report a detailed magnetic study of a new type of self-organized nanowires ...
Magnetodynamical properties of nanomagnets are affected by the demagnetizing fields created by the s...
We have investigated magnetic properties of laterally confined structures of epitaxial Fe films on G...
Magnetic thin films and patterned nanostructures have been studied with respect to their magnetic pr...
We have investigated experimentally the influence of the geometric shape of deep sub-micron nanomag...
Permanent magnet materials require a high uniaxial magneto-crystalline anisotropy. Exchange coupling...
A phenomenological theory of induced magnetic anisotropy in nanostructures is developed. It is shown...
We demonstrate how shape-induced strain can be used to control antiferromagnetic order in NiO/Pt thi...
Mechanical stress due to a misfit between a thin film and its substrate induces strains which can st...
Ion sculpting of ultrathin Fe/Ag(001) films induces the self-assembled formation of nanometric surfa...
Nanoscale modifications of strain and magnetic anisotropy can open pathways to engineering magnetic ...
The ‘atomic saw' method, initially developed for semiconductor heterostructures, has been successful...
Since faceted surfaces lower the dimensionality of the surface, they are an ideal template to nanost...
Since faceted surfaces lower the dimensionality of the surface, they are an ideal template to nanost...
The patterning-induced changes in the magnetic anisotropy and hysteresis of epitaxial (100)-oriented...
International audienceWe report a detailed magnetic study of a new type of self-organized nanowires ...
Magnetodynamical properties of nanomagnets are affected by the demagnetizing fields created by the s...
We have investigated magnetic properties of laterally confined structures of epitaxial Fe films on G...
Magnetic thin films and patterned nanostructures have been studied with respect to their magnetic pr...
We have investigated experimentally the influence of the geometric shape of deep sub-micron nanomag...
Permanent magnet materials require a high uniaxial magneto-crystalline anisotropy. Exchange coupling...
A phenomenological theory of induced magnetic anisotropy in nanostructures is developed. It is shown...
We demonstrate how shape-induced strain can be used to control antiferromagnetic order in NiO/Pt thi...
Mechanical stress due to a misfit between a thin film and its substrate induces strains which can st...
Ion sculpting of ultrathin Fe/Ag(001) films induces the self-assembled formation of nanometric surfa...