Evidence for spin memory in the electron phase coherence in graphene
arXiv:1108.2067 · doi:10.1103/PhysRevB.86.045436
Abstract
We measure the dependence of the conductivity of graphene as a function of magnetic field, temperature and carrier density and discover a saturation of the dephasing length at low temperatures that we ascribe to spin memory effects. Values of the spin coherence length up to eight microns are found to scale with the mean free path. We consider different origins of this effect and suggest that it is controlled by resonant states that act as magnetic-like defects. By varying the level of disorder, we demonstrate that the spin coherence length can be tuned over an order of magnitude.
4 pages, 4 figures
References in corpus (19)
- Carrier transport in 2D graphene layers
- Intrinsic and Rashba Spin-orbit Interactions in Graphene Sheets
- Spin-orbit coupling in curved graphene, fullerenes, nanotubes, and nanotube caps
- Spin-orbit gap of graphene: First-principles calculations
- Weak localisation magnetoresistance and valley symmetry in graphene
- Quantum transport of massless Dirac fermions in graphene
- Defect scattering in graphene
- Weak localisation in graphene flakes
- Magnetism in Disordered Graphene and Irradiated Graphite
- Limits on intrinsic magnetism in graphene
- Graphene Spin Transistor
- Unified description of the dc conductivity of monolayer and bilayer graphene at finite densities based on resonant scatterers
- Hyperfine Interactions in Graphene and Related Carbon Nanostructures
- sp-Electron Magnetic Clusters with a Large Spin in Graphene
- Electron-electron interactions in the conductivity of graphene
- Nonmagnetic-Defect-Induced Magnetism in Graphene
- Spin-resolved Quantum Interference in Graphene
- Quantum transport thermometry for electrons in graphene
- Interactions and magnetic moments near vacancies and resonant impurities in graphene
Cited by in corpus (18)
- Spin-orbit coupling in hydrogenated graphene
- Defect-mediated spin relaxation and dephasing in graphene
- Approaching magnetic ordering in graphene materials by FeCl intercalation
- Phase Coherent Transport in Graphene Nanoribbons and Graphene Nanoribbon Arrays
- Resonant scattering by magnetic impurities as a model for spin relaxation in bilayer graphene
- Spin and Valley Noise in Two-Dimensional Dirac Materials
- Influence of impurity spin dynamics on quantum transport in epitaxial graphene
- Thermal quantum correlations and Teleportation in a Graphene Sheet
- Enhanced quantum coherence in graphene caused by Pd cluster deposition
- Specular electron focusing between gate-defined quantum point contacts in bilayer graphene
- A ballistic electron source with magnetically-controlled valley polarization in bilayer graphene
- Spin dependent quantum interference in non-local graphene spin valves
- Simple mechanism that breaks the Hall effect linearity at low temperatures
- Gate-Tunable Spin Transport and Giant Electroresistance in Ferromagnetic Graphene Vertical Heterostructures
- Nuclear-induced dephasing and signatures of hyperfine effects in isotopically purified C graphene
- Polarization amplification by spin-doping in nanomagnetic/graphene hybrid systems
- Influence of spin dynamics of defects on weak localization in paramagnetic 2D metals
- Magnetoresistance of composites based on graphitic disks and cones