We investigate the role of lithographically-induced strain relaxation in a micron-scaled device fabricated from epitaxial thin films of the magnetostrictive alloy Fe81Ga19. The strain relaxation due to lithographic patterning induces a magnetic anisotropy that competes with the magnetocrystalline and shape induced anisotropy to play a crucial role in stabilising a flux-closing domain pattern. We use magnetic imaging, micromagnetic calculations and linear elastic modelling to investigate a region close to the edges of an etched structure. This highly-strained edge region has a significant influence on the magnetic domain configuration due to an induced magnetic anisotropy resulting from the inverse magnetostriction effect. We investigate the...
abstract: MnAs epitaxial thin films on GaAs(001) single crystalline substrates crystallize at room t...
We investigate experimentally the effects of strain on the injection of 180∘° domain walls (DWs) fro...
Application of strain to magnetic systems offers the promise of a novel, low energy cost method of m...
We investigate the role of lithographically-induced strain relaxation in a micron-scaled device fabr...
We investigate the role of lithographically-induced strain relaxation in a micron-scaled device fabr...
Magnetic memory and logic technologies promise greater energy efficiency and speed than conventional...
Nanoscale modifications of strain and magnetic anisotropy can open pathways to engineering magnetic ...
This work investigates the applicability of strain induced magnetic anisotropy in the control of mag...
In this paper, we propose an approach that combines in situ mechanical-stress measurement and magnet...
Mechanical stress due to a misfit between a thin film and its substrate induces strains which can st...
Magnetic memory technology, especially hard disk drives are the leading technology for storing data....
Anisotropic strain relaxation in (Ga,Mn)As nanostructures was studied combining time-resolved Kerr m...
International audienceThe control of magnetic order in nanoscale devices underpins many proposals fo...
We show tunable strain-induced perpendicular magnetic anisotropy (PMA) over a wide range of thicknes...
Magnetodynamical properties of nanomagnets are affected by the demagnetizing fields created by the s...
abstract: MnAs epitaxial thin films on GaAs(001) single crystalline substrates crystallize at room t...
We investigate experimentally the effects of strain on the injection of 180∘° domain walls (DWs) fro...
Application of strain to magnetic systems offers the promise of a novel, low energy cost method of m...
We investigate the role of lithographically-induced strain relaxation in a micron-scaled device fabr...
We investigate the role of lithographically-induced strain relaxation in a micron-scaled device fabr...
Magnetic memory and logic technologies promise greater energy efficiency and speed than conventional...
Nanoscale modifications of strain and magnetic anisotropy can open pathways to engineering magnetic ...
This work investigates the applicability of strain induced magnetic anisotropy in the control of mag...
In this paper, we propose an approach that combines in situ mechanical-stress measurement and magnet...
Mechanical stress due to a misfit between a thin film and its substrate induces strains which can st...
Magnetic memory technology, especially hard disk drives are the leading technology for storing data....
Anisotropic strain relaxation in (Ga,Mn)As nanostructures was studied combining time-resolved Kerr m...
International audienceThe control of magnetic order in nanoscale devices underpins many proposals fo...
We show tunable strain-induced perpendicular magnetic anisotropy (PMA) over a wide range of thicknes...
Magnetodynamical properties of nanomagnets are affected by the demagnetizing fields created by the s...
abstract: MnAs epitaxial thin films on GaAs(001) single crystalline substrates crystallize at room t...
We investigate experimentally the effects of strain on the injection of 180∘° domain walls (DWs) fro...
Application of strain to magnetic systems offers the promise of a novel, low energy cost method of m...