The work presented in this thesis document seeks to confirm the experimental existance of domain wall substructures in the presence of the Dzyaloshinskii-Moriya interaction that we call magnetic domain wall (DW) skyrmions. These DW skyrmions are characterized as a 360 [degree]winding of magnitization along a chiral N'eel wall and have broad implications in the design of future spintronic devices. This is done primarily using Lorentz transmission electron microscopy (LTEM) which offers high resolution imaging of magnetic features.First, a model materials system of [Pt/(Co/Ni)M /Ir]N based multi-layers was developed to allow for tuning of relevant magnetic parameters that can support the formation of DW skyrmions. The stabilization of chiral...
The microscopic magnetization variation in magnetic domain walls in thin films is a crucial property...
<p>International audience Facing the ever-growing demand for data storage will most probably require...
Néel skyrmions are generally realized in asymmetric multilayers made of heavy metals (HMs) and ultra...
The evolution of chiral spin structures is studied in ferrimagnetic Ta Ir Fe GdFeCo Pt multilayers a...
International audienceThe evolution of chiral spin structures is studied in ferrimagnet Ta/Ir/Fe/GdF...
Skyrmions in ultrathin ferromagnetic metal (FM)/heavy metal (HM) multilayer systems produced by conv...
Magnetic skyrmions have significant potential for applications in storage and logic devices, but the...
Control and manipulation of magnetic textures is promising for the development of next-generation da...
Néel skyrmions are of high interest due to their potential applications in a variety of spintronic d...
The Dzyaloshinskii-Moriya interaction (DMI) is an antisymmetric exchange interac- tion that arises a...
Magnetic skyrmions are topologically wound nanoscale textures of spins whose ambient stability and e...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
In this dissertation, we investigate the stabilization and dynamics of chiral domain walls and skyrm...
The microscopic magnetization variation in magnetic domain walls in thin films is a crucial property...
<p>International audience Facing the ever-growing demand for data storage will most probably require...
Néel skyrmions are generally realized in asymmetric multilayers made of heavy metals (HMs) and ultra...
The evolution of chiral spin structures is studied in ferrimagnetic Ta Ir Fe GdFeCo Pt multilayers a...
International audienceThe evolution of chiral spin structures is studied in ferrimagnet Ta/Ir/Fe/GdF...
Skyrmions in ultrathin ferromagnetic metal (FM)/heavy metal (HM) multilayer systems produced by conv...
Magnetic skyrmions have significant potential for applications in storage and logic devices, but the...
Control and manipulation of magnetic textures is promising for the development of next-generation da...
Néel skyrmions are of high interest due to their potential applications in a variety of spintronic d...
The Dzyaloshinskii-Moriya interaction (DMI) is an antisymmetric exchange interac- tion that arises a...
Magnetic skyrmions are topologically wound nanoscale textures of spins whose ambient stability and e...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
In this dissertation, we investigate the stabilization and dynamics of chiral domain walls and skyrm...
The microscopic magnetization variation in magnetic domain walls in thin films is a crucial property...
<p>International audience Facing the ever-growing demand for data storage will most probably require...
Néel skyrmions are generally realized in asymmetric multilayers made of heavy metals (HMs) and ultra...