We investigate diffusive transport through a number of domain wall (DW) profiles of the important magnetic alloy Permalloy taking into account simultaneously noncollinearity, alloy disorder, and spin-orbit-coupling fully quantum mechanically, from first principles. In addition to observing the known effects of magnetization mistracking and anisotropic magnetoresistance, we discover a not-previously identified contribution to the resistance of a DW that comes from spin-orbit-coupling-mediated spin-flip scattering in a textured diffusive ferromagnet. This adiabatic DW resistance, which should exist in all diffusive DWs, can be observed by varying the DW width in a systematic fashion in suitably designed nanowires
The clear separation of the domain wall magnetoresistance from the anisotropic magnetoresistance has...
Within the present thesis the influence of the magnetization on the resistance behavior of ferromagn...
To study the effect of spin-orbit coupling (SOC) on spin-transfer torque in magnetic materials, we h...
We study the effect of a domain wall on the electronic transport in ferromagnetic quantum wires. Due...
We study the effect of a domain wall on the electronic transport in ferromagnetic quantum wires. Due...
Pas de résuméIn this dissertation we present a theoretical study of electron transport through domai...
In this dissertation we present a theoretical study of electron transport through domain walls, with...
In this dissertation we present a theoretical study of electron transport through domain walls, with...
In this dissertation we present a theoretical study of electron transport through domain walls, with...
Abstract The effects of the domain wall and its pinning center on the electron conduction are studie...
In this work we study the controlled propagation of magnetic domain walls in ferromagnetic nanowires...
textThe static and dynamic properties of spin distributions within domain walls(DWs) confined by Per...
textThe static and dynamic properties of spin distributions within domain walls(DWs) confined by Per...
Recent studies of very narrow Ni wires have shown that the resistance of a wire containing domain wa...
Suppressing the stochastic domain wall (DW) motion in magnetic nanowires is of great importance for ...
The clear separation of the domain wall magnetoresistance from the anisotropic magnetoresistance has...
Within the present thesis the influence of the magnetization on the resistance behavior of ferromagn...
To study the effect of spin-orbit coupling (SOC) on spin-transfer torque in magnetic materials, we h...
We study the effect of a domain wall on the electronic transport in ferromagnetic quantum wires. Due...
We study the effect of a domain wall on the electronic transport in ferromagnetic quantum wires. Due...
Pas de résuméIn this dissertation we present a theoretical study of electron transport through domai...
In this dissertation we present a theoretical study of electron transport through domain walls, with...
In this dissertation we present a theoretical study of electron transport through domain walls, with...
In this dissertation we present a theoretical study of electron transport through domain walls, with...
Abstract The effects of the domain wall and its pinning center on the electron conduction are studie...
In this work we study the controlled propagation of magnetic domain walls in ferromagnetic nanowires...
textThe static and dynamic properties of spin distributions within domain walls(DWs) confined by Per...
textThe static and dynamic properties of spin distributions within domain walls(DWs) confined by Per...
Recent studies of very narrow Ni wires have shown that the resistance of a wire containing domain wa...
Suppressing the stochastic domain wall (DW) motion in magnetic nanowires is of great importance for ...
The clear separation of the domain wall magnetoresistance from the anisotropic magnetoresistance has...
Within the present thesis the influence of the magnetization on the resistance behavior of ferromagn...
To study the effect of spin-orbit coupling (SOC) on spin-transfer torque in magnetic materials, we h...