Helical currents in metallic Rashba strips
arXiv:1602.06193 · doi:10.1103/PhysRevB.93.205113
Abstract
We study the texture of helical currents in metallic planar strips in the presence of Rashba spin-orbit coupling (RSOC) on the lattice at zero temperature. In the noninteracting case, and in the absence of external electromagnetic sources, we determine by exact numerical diagonalization of the single-particle Hamiltonian, the distribution across the strip section of these Rashba helical currents (RHC) as well as their sign oscillation, as a function of the RSOC strength, strip width, electron filling, and strip boundary conditions. Then, we study the effects of charge currents introduced into the system by an Aharonov-Bohm flux for the case of rings or by a voltage bias in the case of open strips. The former setup is studied by variational Monte Carlo, and the later, by the time-dependent density-matrix-renormalization group technique. Particularly for strips formed by two, three and four coupled chains, we show how these RHC vary in the presence of such induced charge current, and how their differences between spin-up and spin-down electron currents on each chain, help to explain the distribution across the strip of charge currents, both of the spin conserving and the spin flipping types. We also predict the appearance of polarized charge currents on each chain. Finally, we show that these Rashba helical currents and their derived features remain in the presence of an on-site Hubbard repulsion as long as the system remains metallic, at quarter filling, and even at half-filling where a Mott-Hubbard metal-insulator transition occurs for large Hubbard repulsion.
revised version, to appear in Phys. Rev. B
References in corpus (22)
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Dissipationless Quantum Spin Current at Room Temperature
- Nonlocal edge state transport in the quantum spin Hall state
- Classification of stable three-dimensional Dirac semimetals with nontrivial topology
- Quantum Spin Hall Effect and Topologically Invariant Chern Numbers
- Quantum Spin Hall Effect and Enhanced Magnetic Response by Spin-Orbit Coupling
- An Exact SU(2) Symmetry and Persistent Spin Helix in a Spin-Orbit Coupled System
- Quantum transport in Rashba spin-orbit materials: A review
- Can Non-Equilibrium Spin Hall Accumulation be Induced in Ballistic Nanostructures?
- Persistent current in ballistic mesoscopic rings with Rashba spin-orbit coupling
- Time-step targetting methods for real-time dynamics using DMRG
- Time evolution of correlations in strongly interacting fermions after a quantum quench
- Intrinsic instability of electronic interfaces with strong Rashba coupling
- Competing effects of interactions and spin-orbit coupling in a quantum wire
- Coexisting edge states and gapless bulk in topological states of matter
- Giant switchable Rashba effect in oxide heterostructures
- Current-induced spin polarization in spin-orbit-coupled two-dimensional electron systems
- Spin correlated electronic state on the surface of a spin-orbit Mott system (Layered Iridates)
- Rashba coupling and magnetic order in correlated helical liquids
- Magnetic and transport signatures of Rashba spin-orbit coupling on the ferromagnetic Kondo lattice model in two dimensions
- Equivalence of Rashba-Hubbard and Hubbard chains
- Possible mechanisms of electronic phase separation in oxide interfaces
Cited by in corpus (5)
- Interacting topological insulators: a review
- Variational study of the interacting spinless Su-Schrieffer-Heeger model
- Analytical approach for the Mott transition in the Kane-Mele-Hubbard model
- Longitudinal optical and spin-Hall conductivities of Rashba conducting strips coupled to ferro- and antiferromagnetic layers
- Transport properties of Rashba conducting strips coupled to magnetic moments with spiral order