Effect of spin rotation coupling on spin transport
arXiv:1309.1376 · doi:10.1016/j.aop.2013.09.011
Abstract
We have studied the spin rotation coupling(SRC) as an ingredient to explain different spin related issues. This special kind of coupling can play the role of a Dresselhaus like coupling in certain conditions. Consequently, one can control the spin splitting, induced by the Dresselhaus like term, which is unusual in semiconductor heterostucture. Within this framework, we also study the renormalization of the spin dependent electric field and spin current due to the perturbation, by taking into account the interband mixing in the rotating system. In this paper we predict the enhancement of the spin dependent electric field resulting from the renormalized spin rotation coupling. The renormalization factor of the spin electric field is different from that of the SRC or Zeeman coupling. The effect of renormalized SRC on spin current and Berry curvature is also studied. Interestingly, in presence of this SRC induced SOC it is possible to describe spin splitting as well as spin galvanic effect in semiconductors.
12 pages, no figures, Accepted for publication in Annals of Physics
References in corpus (5)
Cited by in corpus (16)
- Relativistic quantum motion of spin-0 particles under the influence of non-inertial effects in the cosmic string space-time
- Effects on a Landau-type system for a neutral particle with no permanent electric dipole moment subject to the Kratzer potential in a rotating frame
- Deformations of the spin currents by topological screw dislocation and cosmic dispiration
- Rotating effects on the Landau quantization for an atom with a magnetic quadrupole moment
- Effect of cosmic string on spin dynamics
- Noninertial effects on nonrelativistic topological quantum scattering
- Interaction of the magnetic quadrupole moment of a non-relativistic particle with an electric field in the background of screw dislocations with a rotating frame
- Gravitomagnetic Stern--Gerlach Force
- Some aspects of an induced electric dipole moment in rotating and nonrotating frames
- Remarks on the Study of Electronic Properties and Photoionization Process in Rotating 2D Quantum Rings
- Spin Transport in non-inertial frame
- On an atom with a magnetic quadrupole moment in a rotating frame
- Extrinsic spin Hall effect in inhomogeneous systems
- Spin Currents of Charged Dirac Particles in Rotating Coordinates
- Mach's Principle and the Origin of Inertia
- Effect of non-uniform exchange field in ferromagnetic graphene