We report on a general principle using interlayer exchange coupling to extend the regime of chiral magnetic films in which stable or metastable magnetic Skyrmions can appear at a zero magnetic field. We verify this concept on the basis of a first-principles model for a Mn monolayer on a W(001) substrate, a prototype chiral magnet for which the atomic-scale magnetic texture is determined by the frustration of exchange interactions, impossible to unwind by laboratory magnetic fields. By means of ab initio calculations for the Mn/Wm/Con/Pt/W(001) multilayer system we show that for certain thicknesses m of the W spacer and n of the Co reference layer, the effective field of the reference layer fully substitutes the required magnetic field for S...
Facing the ever-growing demand for data storage will most probably require a new paradigm. Nanoscale...
Recent developments have led to an explosion of activity on skyrmions in three-dimensional (3D) chir...
Abstract Skyrmions are promising for the next generation of spintronic and magnonic devices, but the...
This thesis focused on chiral phenomena in thin magnetic layers. The three main points of the thesis...
Abstract Using Monte-Carlo simulations and micromagnetic simulations, we reveal how the spin structu...
Chiral magnetism, wherein there is a preferred sense of rotation of the magnetization, determines th...
© 2015 AIP Publishing LLC. Possible magnetic skyrmion device applications motivate the search for st...
The stability and sizes of chiral skyrmions in ultrathin magnetic films are calculated accounting fo...
Magnetic skyrmions are topologically wound nanoscale textures of spins whose ambient stability and e...
Néel skyrmions are generally realized in asymmetric multilayers made of heavy metals (HMs) and ultra...
<p>International audience Facing the ever-growing demand for data storage will most probably require...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Chiral magnetism, wherein there is a preferred sense of rotation of the magnetization, has become a ...
International audienceNoncollinear spin textures in ferromagnetic ultrathin films are currently the ...
In this dissertation, we investigate the stabilization and dynamics of chiral domain walls and skyrm...
Facing the ever-growing demand for data storage will most probably require a new paradigm. Nanoscale...
Recent developments have led to an explosion of activity on skyrmions in three-dimensional (3D) chir...
Abstract Skyrmions are promising for the next generation of spintronic and magnonic devices, but the...
This thesis focused on chiral phenomena in thin magnetic layers. The three main points of the thesis...
Abstract Using Monte-Carlo simulations and micromagnetic simulations, we reveal how the spin structu...
Chiral magnetism, wherein there is a preferred sense of rotation of the magnetization, determines th...
© 2015 AIP Publishing LLC. Possible magnetic skyrmion device applications motivate the search for st...
The stability and sizes of chiral skyrmions in ultrathin magnetic films are calculated accounting fo...
Magnetic skyrmions are topologically wound nanoscale textures of spins whose ambient stability and e...
Néel skyrmions are generally realized in asymmetric multilayers made of heavy metals (HMs) and ultra...
<p>International audience Facing the ever-growing demand for data storage will most probably require...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Chiral magnetism, wherein there is a preferred sense of rotation of the magnetization, has become a ...
International audienceNoncollinear spin textures in ferromagnetic ultrathin films are currently the ...
In this dissertation, we investigate the stabilization and dynamics of chiral domain walls and skyrm...
Facing the ever-growing demand for data storage will most probably require a new paradigm. Nanoscale...
Recent developments have led to an explosion of activity on skyrmions in three-dimensional (3D) chir...
Abstract Skyrmions are promising for the next generation of spintronic and magnonic devices, but the...