In this paper, we propose an approach that combines in situ mechanical-stress measurement and magnetic force microscopy (MFM) imaging and enable manipulation of the spin configuration of flexible films by tailoring the stress-induced anisotropy. We demonstrate that the stress-induced anisotropy can effectively rotate stripe domains. We see that, without the application of the magnetic field, the stripe domains tend to align parallel (perpendicular) to the direction of tensile (compressive) stress. The expansion (shrinkage) of flux-closure cap domains in response to applied tensile (compressive) stress, changes the out-of-plane stray field and the profile in the MFM image. The experimental results have been reproduced very well by micromagne...
Mechanical stress due to a misfit between a thin film and its substrate induces strains which can st...
The magnetization reversal in a series of rf-sputtered FeSiAl(N) films has been studied using magnet...
We present a study of the magnetic properties of chemically disordered ferromagnetic FePt films of 1...
We investigate the role of lithographically-induced strain relaxation in a micron-scaled device fabr...
The stress-induced magnetic domain switching in FeGa thin films is studied using phase-field method....
Magnetic films with perpendicular magnetic anisotropy (PMA) are attractive materials for application...
Spin valve devices, consisting of a free magnetic layer, a spacer layer, and a pinned magnetic layer...
International audienceThe effect of multiaxial mechanical stress on angle-dependent magnetization re...
Ferromagnetic thin films with moderate perpendicular magnetic anisotropy (PMA) are known to support ...
The in-plane rotation of magnetic stripe domains in a 65-nm magnetostrictive Fe0.8Ga0.2 epitaxial fi...
We investigate the role of lithographically-induced strain relaxation in a micron-scaled device fabr...
Magnetic domain motion has been widely studied in the fields of spintronics, nanowires, and thin fil...
Ni2MnGa magnetic shape memory alloys have a microstructure consisting of marten- site variants, and...
We show by a combined magnetic force microscopy and synchrotron radiation spectroscopy study that st...
Magnetostrictive thin films of FeGa (galfenol) are the subject of current investigations owing to th...
Mechanical stress due to a misfit between a thin film and its substrate induces strains which can st...
The magnetization reversal in a series of rf-sputtered FeSiAl(N) films has been studied using magnet...
We present a study of the magnetic properties of chemically disordered ferromagnetic FePt films of 1...
We investigate the role of lithographically-induced strain relaxation in a micron-scaled device fabr...
The stress-induced magnetic domain switching in FeGa thin films is studied using phase-field method....
Magnetic films with perpendicular magnetic anisotropy (PMA) are attractive materials for application...
Spin valve devices, consisting of a free magnetic layer, a spacer layer, and a pinned magnetic layer...
International audienceThe effect of multiaxial mechanical stress on angle-dependent magnetization re...
Ferromagnetic thin films with moderate perpendicular magnetic anisotropy (PMA) are known to support ...
The in-plane rotation of magnetic stripe domains in a 65-nm magnetostrictive Fe0.8Ga0.2 epitaxial fi...
We investigate the role of lithographically-induced strain relaxation in a micron-scaled device fabr...
Magnetic domain motion has been widely studied in the fields of spintronics, nanowires, and thin fil...
Ni2MnGa magnetic shape memory alloys have a microstructure consisting of marten- site variants, and...
We show by a combined magnetic force microscopy and synchrotron radiation spectroscopy study that st...
Magnetostrictive thin films of FeGa (galfenol) are the subject of current investigations owing to th...
Mechanical stress due to a misfit between a thin film and its substrate induces strains which can st...
The magnetization reversal in a series of rf-sputtered FeSiAl(N) films has been studied using magnet...
We present a study of the magnetic properties of chemically disordered ferromagnetic FePt films of 1...