Spin transfer torque in continuous textures: semiclassical Boltzmann approach
arXiv:cond-mat/0611320 · doi:10.1103/PhysRevB.75.174414
Abstract
We consider a microscopic model of itinerant electrons coupled via ferromagnetic exchange to a local magnetization whose direction vector n(r,t) varies in space and time. We assume that to first order in the spatial gradient and time derivative of n(r,t) the magnetization distribution function f(p,r,t) of itinerant electrons has the Ansatz form: f(p,r,t)=f_{parallel}(p)n(r,t)+ f_{1 r}(p) n ^ nabla_{r} n+f_{2 r}(p) nabla_{r} n+ f_{1 t}(p) n ^ partial_t n+f_{2 t}(p) partial_t n. Using then the Landau-Sillin equations of motion approach we derive explicit forms for the components f_{parallel}(p), f_{1 r}(p), f_{2 r}(p), f_{1 t}(p) and f_{2 t}(p) in "equilibrum" and in out of equilibrum situations for: (i) no scattering by impurities, (ii) spin conserving scattering and (iii) spin non-conserving scattering. The back action on the localized electron magnetization from the out of equilibrum part of the two components f_{1 r}, f_{2 r} constitutes the two spin transfer torque terms.
Revised version accepted for publication, 12 pages, one figure
References in corpus (4)
Cited by in corpus (31)
- Microscopic approach to current-driven domain wall dynamics
- Theory of current-driven magnetization dynamics in inhomogeneous ferromagnets
- Spin pumping by a field-driven domain wall
- Current-induced torques in textured Rashba ferromagnets
- The domain wall spin torque-meter
- Magnonic black holes
- Spin Dynamics with Inertia in Metallic Ferromagnets
- Phenomenology of current-skyrmion interactions in thin films with perpendicular magnetic anisotropy
- Spin-wave contributions to current-induced domain wall dynamics
- Effects of non-adiabaticity on the voltage generated by a moving domain wall
- Spin-transfer mechanism for magnon-drag thermopower
- Theory of Domain Wall Dynamics under Current
- Creep of current-driven domain-wall lines: intrinsic versus extrinsic pinning
- Gauge Field Formulation of Adiabatic Spin Torques
- Current-driven and field-driven domain walls at nonzero temperature
- Calculation of current-induced torque from spin continuity equation
- Spin and charge transport induced by gauge fields in a ferromagnet
- Influence of magnetic viscosity on domain wall dynamics under spin-polarized currents
- Current-induced non-adiabatic spin torques and domain wall motion with spin relaxation in a ferromagnetic metallic wire
- Current-induced spin torques in III-V ferromagnetic semiconductors
- Dissipation due to pure spin-current generated by spin pumping
- Spin-dependent diffraction at ferromagnetic/spin spiral interface
- Topological changes of two-dimensional magnetic textures
- Electrical rectification effect in single domain magnetic microstrips: a micromagnetics-based analysis
- Hole spin relaxation and coefficients in Landau-Lifshitz-Gilbert equation in ferromagnetic GaMnAs
- Nonlocal spin torques in Rashba quantum wires with steep magnetic textures
- Effect of spin-conserving scattering on Gilbert damping in ferromagnetic semiconductors
- Spin-conserving Boltzmann theory for carriers and excitons in organic semiconductors
- Spin torque due to diffusive spin current in magnetic texture
- Local spin transfer torque and magnetoresistance in domain walls with variable width
- Derivation of a linear collision operator for the spinorial Wigner equation and its semiclassical limit