Recently discovered exotic magnetic configurations, namely magnetic solitons appearing in the presence of bulk or interfacial Dzyaloshinskii-Moriya Interaction (i-DMI), have excited scientists to explore their potential applications in emerging spintronic technologies such as race-track magnetic memory, spin logic, radio frequency nano-oscillators and sensors. Such studies are motivated by their foreseeable advantages over conventional micro-magnetic structures due to their small size, topological stability and easy spin-torque driven manipulation with much lower threshold current densities giving way to improved storage capacity, and faster operation with efficient use of energy. In this work, we show that in the presence of i-DMI in Pt/Co...
Perpendicular synthetic antiferromagnets (p-SAFs) are of interest for the next generation of ultrafa...
Magnetic vortices in ferromagnetic disks are curling magnetization structures characterized by the s...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...
Magnetic skyrmions have significant potential for applications in storage and logic devices, but the...
Magnetic skyrmions, topologically stable spin textures that can be driven by electric currents effic...
Facing the ever-growing demand for data storage will most probably require a new paradigm. Nanoscale...
Magnetic skyrmions are particle-like nanoscale magnetic structures currently surging in interest in ...
<p>International audience Facing the ever-growing demand for data storage will most probably require...
17 pages, 4 figuresInternational audienceElectric control of magnetism is a prerequisite for efficie...
In this thesis we study strongly coupled pairs of spin vortices, in a configurationsuch that the cor...
The topological spin textures in magnetic vortices in confined magnetic elements offer a platform fo...
Skyrmions are topologically protected non-collinear magnetic structures. Their stability is ideally ...
Magnetic vortices in nanoscopic ferromagnetic elements can be treated as solitons that exhibit stati...
Skyrmions are prospected as the potential future of data storage due to their topologically protecte...
Understanding the properties and behavior of spin textures in confined nanomagnetic systems is scien...
Perpendicular synthetic antiferromagnets (p-SAFs) are of interest for the next generation of ultrafa...
Magnetic vortices in ferromagnetic disks are curling magnetization structures characterized by the s...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...
Magnetic skyrmions have significant potential for applications in storage and logic devices, but the...
Magnetic skyrmions, topologically stable spin textures that can be driven by electric currents effic...
Facing the ever-growing demand for data storage will most probably require a new paradigm. Nanoscale...
Magnetic skyrmions are particle-like nanoscale magnetic structures currently surging in interest in ...
<p>International audience Facing the ever-growing demand for data storage will most probably require...
17 pages, 4 figuresInternational audienceElectric control of magnetism is a prerequisite for efficie...
In this thesis we study strongly coupled pairs of spin vortices, in a configurationsuch that the cor...
The topological spin textures in magnetic vortices in confined magnetic elements offer a platform fo...
Skyrmions are topologically protected non-collinear magnetic structures. Their stability is ideally ...
Magnetic vortices in nanoscopic ferromagnetic elements can be treated as solitons that exhibit stati...
Skyrmions are prospected as the potential future of data storage due to their topologically protecte...
Understanding the properties and behavior of spin textures in confined nanomagnetic systems is scien...
Perpendicular synthetic antiferromagnets (p-SAFs) are of interest for the next generation of ultrafa...
Magnetic vortices in ferromagnetic disks are curling magnetization structures characterized by the s...
Non-volatile memory and computing technology rely on efficient read and write of ultra-tiny informat...