The damping of magnetization, represented by the rate at which it relaxes to equilibrium, is successfully modeled as a phenomenological extension in the Landau-Lifschitz-Gilbert equation. This is the damping torque term known as Gilbert damping and its direction is given by the vector product of the magnetization and its time derivative. Here we derive the Gilbert term from first-principles by a nonrelativistic expansion of the Dirac equation. We find that this term arises when one calculates the time evolution of the spin observable in the presence of the full spin-orbital coupling terms, while recognizing the relationship between the curl of the electric field and the time-varying magnetic induction.National Science FoundationOffice of Na...
A first-principles formulation of scattering theory that includes disorder, spin-orbit coupling and ...
The dynamics of a magnetic moment or spin are of high interest to applications in technology. Dissip...
The dynamic process of how fast a spintronic device can be switched from one state to another is cha...
The Gilbert damping constant is an important phenomenological parameter for the description of magne...
We propose a systematic and sequential expansion of the Landau-Lifshitz-Gilbert equation utilizing t...
In the Landau-Lifshitz equation which describes the evolution of spin fields in nonequilibrium conti...
We propose a systematic and sequential expansion of the Landau–Lifshitz–Gilbert equation utilizing t...
Relaxation effects are of primary importance in the description of magnetic excitations, leading to ...
A keen interest towards technological implications of spin-orbit driven magnetization dynamics reque...
The magnetization dynamics of a single domain ferromagnet in contact with a thermal bath is studied ...
We studied, from a theoretical standpoint, the Landau-Lifshitz-Gilbert equation of magnetic metamate...
Gilbert damping is a key property governing magnetization dynamics in ordered magnets. We present a ...
The modification of the magnetization dissipation or Gilbert damping caused by an inhomogeneous magn...
Starting from a model that consists of a semiclassical spin coupled to two leads we present a micro...
We study time-dependent electronic and spin transport through an electronic level connected to two l...
A first-principles formulation of scattering theory that includes disorder, spin-orbit coupling and ...
The dynamics of a magnetic moment or spin are of high interest to applications in technology. Dissip...
The dynamic process of how fast a spintronic device can be switched from one state to another is cha...
The Gilbert damping constant is an important phenomenological parameter for the description of magne...
We propose a systematic and sequential expansion of the Landau-Lifshitz-Gilbert equation utilizing t...
In the Landau-Lifshitz equation which describes the evolution of spin fields in nonequilibrium conti...
We propose a systematic and sequential expansion of the Landau–Lifshitz–Gilbert equation utilizing t...
Relaxation effects are of primary importance in the description of magnetic excitations, leading to ...
A keen interest towards technological implications of spin-orbit driven magnetization dynamics reque...
The magnetization dynamics of a single domain ferromagnet in contact with a thermal bath is studied ...
We studied, from a theoretical standpoint, the Landau-Lifshitz-Gilbert equation of magnetic metamate...
Gilbert damping is a key property governing magnetization dynamics in ordered magnets. We present a ...
The modification of the magnetization dissipation or Gilbert damping caused by an inhomogeneous magn...
Starting from a model that consists of a semiclassical spin coupled to two leads we present a micro...
We study time-dependent electronic and spin transport through an electronic level connected to two l...
A first-principles formulation of scattering theory that includes disorder, spin-orbit coupling and ...
The dynamics of a magnetic moment or spin are of high interest to applications in technology. Dissip...
The dynamic process of how fast a spintronic device can be switched from one state to another is cha...