A complete set of the generalized drift-diffusion equations for a coupled charge and spin dynamics in ferromagnets in the presence of extrinsic spin-orbit coupling is derived from the quantum kinetic approach, covering major transport phenomena, such as the spin and anomalous Hall effects, spin swapping, spin precession, and relaxation processes. We argue that the spin swapping effect in ferromagnets is enhanced due to spin polarization, while the overall spin texture induced by the interplay of spin-orbital and spin precession effects displays a complex spatial dependence that can be exploited to generate torques and nucleate or propagate domain walls in centrosymmetric geometries without the use of external polarizers, as opposed to the c...
In this paper, we present a mean-field model of the spin-magnetization coupling in ferromagnetic mat...
Spin motive force is a spin-dependent force on conduction electrons induced by magnetization dynamic...
The quasiclassical Green function formalism is used to describe charge and spin dynamics in the pres...
Based on the spinor Boltzmann equation, we obtain the continuity equations of charge and spin accumu...
The work performed during the grant period focused on the phenomenon of spin-transfer torque. This i...
Since the discovery of giant magnetoresistance in 1980s, Spintronics became an exciting field which ...
Together with the spinor Boltzmann equation (SBE) satisfied by conduction electrons, we solve the La...
We present a theoretical study of diffusive superconducting systems with extrinsic spin-orbit coupli...
Motivated by the importance of understanding various competing mechanisms to the current-induced spi...
In this Thesis the interplay between spin currents and magnetization dynamics is investigated theore...
To study the effect of spin-orbit coupling (SOC) on spin-transfer torque in magnetic materials, we h...
International audienceThe electric manipulation of magnetic textures in nanostructures, important fo...
peer reviewedSpins transverse to the magnetization of a ferromagnet only survive over a short distan...
We consider theoretically domain wall motion driven by spin-orbit and spin Hall torques. We find tha...
We consider the spin-orbit-induced spin Hall effect and spin swapping in diffusive superconductors. ...
In this paper, we present a mean-field model of the spin-magnetization coupling in ferromagnetic mat...
Spin motive force is a spin-dependent force on conduction electrons induced by magnetization dynamic...
The quasiclassical Green function formalism is used to describe charge and spin dynamics in the pres...
Based on the spinor Boltzmann equation, we obtain the continuity equations of charge and spin accumu...
The work performed during the grant period focused on the phenomenon of spin-transfer torque. This i...
Since the discovery of giant magnetoresistance in 1980s, Spintronics became an exciting field which ...
Together with the spinor Boltzmann equation (SBE) satisfied by conduction electrons, we solve the La...
We present a theoretical study of diffusive superconducting systems with extrinsic spin-orbit coupli...
Motivated by the importance of understanding various competing mechanisms to the current-induced spi...
In this Thesis the interplay between spin currents and magnetization dynamics is investigated theore...
To study the effect of spin-orbit coupling (SOC) on spin-transfer torque in magnetic materials, we h...
International audienceThe electric manipulation of magnetic textures in nanostructures, important fo...
peer reviewedSpins transverse to the magnetization of a ferromagnet only survive over a short distan...
We consider theoretically domain wall motion driven by spin-orbit and spin Hall torques. We find tha...
We consider the spin-orbit-induced spin Hall effect and spin swapping in diffusive superconductors. ...
In this paper, we present a mean-field model of the spin-magnetization coupling in ferromagnetic mat...
Spin motive force is a spin-dependent force on conduction electrons induced by magnetization dynamic...
The quasiclassical Green function formalism is used to describe charge and spin dynamics in the pres...