Skyrmions in ultrathin ferromagnetic metal (FM)/heavy metal (HM) multilayer systems produced by conventional sputtering methods have recently generated huge interest due to their applications in the field of spintronics. The sandwich structure with two correctly-chosen heavy metal layers provides an additive interfacial exchange interaction which promotes domain wall or skyrmion spin textures that are Néel in character and with a fixed chirality. Lorentz transmission electron microscopy (TEM) is a high resolution method ideally suited to quantitatively image such chiral magnetic configurations. When allied with physical and chemical TEM analysis of both planar and cross-sectional samples, key length scales such as grain size and the chiral ...
Néel skyrmions are of high interest due to their potential applications in a variety of spintronic d...
Magnetic skyrmions are small whirling topological defects in a texture magnetization state. Their st...
Skyrmions can be driven by spin-orbit torques as a result of the spin Hall effect. Here we model an ...
Skyrmions in ultrathin ferromagnetic metal (FM)/heavy metal (HM) multilayer systems produced by conv...
Sub-100-nm skyrmions are stabilized in magnetic metallic multilayers and observed using transmission...
The Dzyaloshinskii-Moriya interaction (DMI) is an antisymmetric exchange interac- tion that arises a...
The work presented in this thesis document seeks to confirm the experimental existance of domain wal...
Néel skyrmions are generally realized in asymmetric multilayers made of heavy metals (HMs) and ultra...
<p>Magnetic skyrmions are chiral quasiparticles that show promise for the transportation and storage...
peer reviewedSkyrmions in magnetic materials offer attractive perspectives for future spintronic app...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Room temperature magnetic skyrmions in magnetic multilayers are considered as information carriers f...
Magnetic skyrmions are topologically wound nanoscale textures of spins whose ambient stability and e...
Magnetic skyrmions are topologically non-trivial nanoscale objects. Their topology, which originates...
Chiral magnetic textures in ultrathin perpendicularly magnetised multilayer film stacks with an inte...
Néel skyrmions are of high interest due to their potential applications in a variety of spintronic d...
Magnetic skyrmions are small whirling topological defects in a texture magnetization state. Their st...
Skyrmions can be driven by spin-orbit torques as a result of the spin Hall effect. Here we model an ...
Skyrmions in ultrathin ferromagnetic metal (FM)/heavy metal (HM) multilayer systems produced by conv...
Sub-100-nm skyrmions are stabilized in magnetic metallic multilayers and observed using transmission...
The Dzyaloshinskii-Moriya interaction (DMI) is an antisymmetric exchange interac- tion that arises a...
The work presented in this thesis document seeks to confirm the experimental existance of domain wal...
Néel skyrmions are generally realized in asymmetric multilayers made of heavy metals (HMs) and ultra...
<p>Magnetic skyrmions are chiral quasiparticles that show promise for the transportation and storage...
peer reviewedSkyrmions in magnetic materials offer attractive perspectives for future spintronic app...
Chiral magnets are an emerging class of topological matter harboring localized and topologically pro...
Room temperature magnetic skyrmions in magnetic multilayers are considered as information carriers f...
Magnetic skyrmions are topologically wound nanoscale textures of spins whose ambient stability and e...
Magnetic skyrmions are topologically non-trivial nanoscale objects. Their topology, which originates...
Chiral magnetic textures in ultrathin perpendicularly magnetised multilayer film stacks with an inte...
Néel skyrmions are of high interest due to their potential applications in a variety of spintronic d...
Magnetic skyrmions are small whirling topological defects in a texture magnetization state. Their st...
Skyrmions can be driven by spin-orbit torques as a result of the spin Hall effect. Here we model an ...