Spatial distribution of local currents of massless Dirac fermions in quantum transport through graphene nanoribbons
arXiv:0704.2419 · doi:10.1209/0295-5075/80/47001
Abstract
We employ the formalism of bond currents, expressed in terms of the nonequilibrium Green functions, to image the charge flow between two sites of the honeycomb lattice of graphene ribbons of few nanometers width. In sharp contrast to nonrelativistic electrons, current density profiles of quantum transport at energies close to the Dirac point in clean zigzag graphene nanoribbons (ZGNR) differs markedly from the profiles of charge density peaked at the edges due to zero-energy localized edge states. For transport through the lowest propagating mode induced by these edge states, edge vacancies do not affect current density peaked in the center of ZGNR. The long-range potential of a single impurity acts to reduce local current around it while concurrently increasing the current density along the zigzag edge, so that ZGNR conductance remains perfect .
5 pages, 5 figures
References in corpus (17)
- Detection of Individual Gas Molecules Absorbed on Graphene
- Energy Band Gap Engineering of Graphene Nanoribbons
- Energy Gaps in Graphene Nanoribbons
- Valley filter and valley valve in graphene
- Selective transmission of Dirac electrons and ballistic magnetoresistance of \textit{n-p} junctions in graphene
- Peculiar Width Dependence of the Electronic Property of Carbon Nanoribbons
- Quantum transport of massless Dirac fermions in graphene
- Electron transport in disordered graphene
- Edge state on hydrogen-terminated graphite edges investigated by scanning tunneling microscopy
- Perfectly Conducting Channel and Universality Crossover in Disordered Nano-Graphene Ribbons
- Conductance calculations for quantum wires and interfaces: mode matching and Green functions
- Coherent transport in graphene nanoconstrictions
- Imaging mesoscopic spin Hall flow: Spatial distribution of local spin currents and spin densities in and out of multiterminal spin-orbit coupled semiconductor nanostructures
- Gauge field for edge state in graphene
- Impurity-assisted tunneling in graphene
- Coherent electronic transport in a multimode quantum channel with Gaussian-type scatterers
- Transport regimes in surface disordered graphene sheets
Cited by in corpus (22)
- Spin currents in rough graphene nanoribbons: Universal fluctuations and spin injection
- Electrically Tunable Quasi-Flat Bands, Conductance and Field Effect Transistor in Phosphorene
- Electronic transport properties of graphene nanoribbons
- Localization and Kosterlitz-Thouless Transition in Disordered Graphene
- Giant thermoelectric effect in graphene-based topological insulators with nanopores
- I-V curve signatures of nonequilibrium-driven band gap collapse in magnetically ordered zigzag graphene nanoribbon two-terminal devices
- Detecting the Néel vector of altermagnet by attaching a topological insulator and crystalline valley-edge insulator
- Weak momentum scattering and the conductivity of graphene
- Crossed graphene nanoribbons as beam splitters and mirrors for electron quantum optics
- The effect of magnetic field and disorders on the electronic transport in graphene nanoribbons
- Shot Noise Probing of Magnetic Ordering in Zigzag Graphene Nanoribbons
- Current flow in biased bilayer graphene: the role of sublattices
- Moir{é} pattern assisted geometric resonant tunneling in disordered twisted bilayer graphene
- Nonlinear Transport through ultra-narrow Zigzag Graphene Nanoribbons: non-equilibrium charge and bond currents
- Arrays of one-dimensional conducting channels in minimally twisted bilayer graphene
- Cavity-modified quantum electron transport in multi-terminal devices and interferometers
- Electron beam splitting effect with crossed zigzag graphene nanoribbons in high-spin metallic states
- Local heat current flow in ballistic phonon transport of graphene nanoribbons
- Spin-polarizing electron beam splitter from crossed graphene nanoribbons
- Mach--Zehnder-like interferometry with graphene nanoribbon networks
- Impact of electron-electron interactions on the thermoelectric efficiency of graphene quantum point contacts
- Husimi Maps in Graphene