Electronic and optical properties of graphene nanoribbons in external fields
arXiv:1510.01889 · doi:10.1039/C5CP06533J
Abstract
A review work is done for electronic and optical properties of graphene nanoribbons in magnetic, electric, composite, and modulated fields. Effects due to the lateral confinement, curvature, stacking, non-uniform subsystems and hybrid structures are taken into account. The special electronic properties, induced by complex competitions between external fields and geometric structures, include many one-dimensional parabolic subbands, standing waves, peculiar edge-localized states, width- and field-dependent energy gaps, magnetic-quantized quasi-Landau levels, curvature-induced oscillating Landau subbands, crossings and anti-crossings of quasi-Landau levels, coexistence and combination of energy spectra in layered structures, and various peak structures in the density of states. There exist diverse absorption spectra and different selection rules, covering edge-dependent selection rules, magneto-optical selection rule, splitting of the Landau absorption peaks, intragroup and intergroup Landau transitions, as well as coexistence of monolayer-like and bilayer-like Landau absorption spectra. Detailed comparisons are made between the theoretical calculations and experimental measurements. The predicted results, the parabolic subbands, edge-localized states, gap opening and modulation, and spatial distribution of Landau subbands, have been verified by various experimental measurements.
References in corpus (81)
- Electric Field Effect in Atomically Thin Carbon Films
- Two Dimensional Atomic Crystals
- Universal Dynamic Conductivity and Quantized Visible Opacity of Suspended Graphene
- Ultrahigh electron mobility in suspended graphene
- Energy Band Gap Engineering of Graphene Nanoribbons
- Energy Gaps in Graphene Nanoribbons
- The structure of suspended graphene sheets
- Giant Intrinsic Carrier Mobilities in Graphene and Its Bilayer
- Graphene plasmonics
- Room-Temperature Quantum Hall Effect in Graphene
- Biased bilayer graphene: semiconductor with a gap tunable by electric field effect
- Unconventional quantum Hall effect and Berry's phase of 2pi in bilayer graphene
- Germanene: a novel two-dimensional Germanium allotrope akin to Graphene and Silicene
- Graphene Nano-Ribbon Electronics
- Room Temperature All Semiconducting sub-10nm Graphene Nanoribbon Field-Effect Transistors
- Electronic States of Graphene Nanoribbons
- Unconventional Integer Quantum Hall effect in graphene
- Ripple Texturing of Suspended Graphene Atomic Membranes
- Graphene field-effect-transistors with high on/off current ratio and large transport band gap at room temperature
- Quantum interference and Klein tunneling in graphene heterojunctions
- A Graphene Field-Effect Device
- Valley-Polarized Metals and Quantum Anomalous Hall Effect in Silicene
- Mid-infrared plasmons in scaled graphene nanostructures
- Intrinsic Response of Graphene Vapor Sensors
- Tailoring the atomic structure of graphene nanoribbons by STM lithography
- Room temperature magnetic order on zigzag edges of narrow graphene nanoribbons
- Evidence of Klein tunneling in graphene p-n junctions
- Peculiar Width Dependence of the Electronic Property of Carbon Nanoribbons
- Transport measurements across a tunable potential barrier in graphene
- Periodically rippled graphene: growth and spatially resolved electronic structure
- Landau level spectroscopy of ultrathin graphite layers
- Infrared spectroscopy of Landau levels in graphene
- Crystallographic Etching of Few-Layer Graphene
- Scanning Tunneling Spectroscopy of Graphene on Graphite
- Anisotropic Etching and Nanoribbon Formation in Single-Layer Graphene
- Etching and Narrowing of Graphene from the Edges
- Electronic transport and quantum Hall effect in bipolar graphene p-n-p junction
- Visibility of dichalcogenide nanolayers
- Edge state on hydrogen-terminated graphite edges investigated by scanning tunneling microscopy
- Irradiated graphene as a tunable Floquet topological insulator
- Midgap states and charge inhomogeneities in corrugated graphene
- Quantum dots in graphene
- Group-IV graphene- and graphane-like nanosheets
- Novel electric field effects on Landau levels in Graphene
- Cyclotron Resonance study of the electron and hole velocity in graphene monolayers
- Edge States and the Quantized Hall Effect in Graphene
- Momentum-Resolved Landau-Level Spectroscopy of Dirac Surface State in Bi2Se3
- Magneto-optical properties of multilayer graphenes
- Armchair graphene nanoribbons: Electronic structure and electric field modulation
- Anomalous Absorption Line in the Magneto-Optical Response of Graphene
- Cyclotron resonance in bilayer graphene
- Germanene termination of GePt crystals on Ge(110)
- Graphene nanoribbons from unzipped carbon nanotubes: atomic structures, Raman spectroscopy and electrical properties
- Dirac Fermion Confinement in Graphene
- Energy gaps, magnetism, and electric field effects in bilayer graphene nanoribbons
- The Quantum Hall Transition in Real Space: From Localized to Extended States
- Electron-Hole Crossover in Graphene Quantum Dots
- Transmission through a biased graphene bilayer barrier
- High-Energy Limit of Massless Dirac Fermions in Multilayer Graphene using Magneto-Optical Transmission Spectroscopy
- Midgap states in corrugated graphene: Ab-initio calculations and effective field theory
- Charge Detection in Graphene Quantum Dots
- Electronic transport through bilayer graphene flakes
- Magneto-optical Selection Rules in Bilayer Bernal Graphene
- Charge transport in dual gated bilayer graphene with Corbino geometry
- Transverse field effect in graphene ribbons
- Quantum Phase Extraction in Isospectral Electronic Nanostructures
- Zero Landau level in folded graphene nanoribbons
- Local gating of a graphene Hall bar by graphene side gates
- Semimetalic graphene in a modulated electric potential
- Imaging two-component nature of Dirac-Landau levels in the topological surface state of Bi2Se3
- Probing electronic excitations in mono- to pentalayer graphene by micro-magneto-Raman spectroscopy
- ARPES experiment in fermiology of quasi-2D metals (Review Article)
- Visualisation of edge effects in side-gated graphene nanodevices
- Localized Distributions of Quasi Two-Dimensional Electronic States near Defects Artificially Created at Graphite Surfaces in Magnetic Fields
- Single-Atom Gating of Quantum State Superpositions
- Magnetoresistive effect in graphene nanoribbon due to magnetic field induced band gap modulation
- Graphene Side Gate Engineering
- Electrical manipulation of the edge states in graphene and the effect on the quantum Hall transport
- Theory of Weiss oscillations in the magnetoplasmon spectrum of Dirac electrons in graphene
- Transversal electric field effect in multilayer graphene nanoribbon
- Conductance modulation in graphene nanoribbon under transver-se asymmetric electric potential
Cited by in corpus (18)
- Tunable light trapping and absorption enhancement with graphene ring arrays
- Electro-optical properties of phosphorene quantum dots
- Optical selection rules of zigzag graphene nanoribbons
- Two-dimensional Dirac particles in a Pöschl-Teller waveguide
- Field-created diverse quantizations in phosphorenes
- Ferrimagnetic and antiferromagnetic phase in bilayer graphene nanoflake controlled with external electric fields
- Magnetoplasmons in monolayer black phosphorus structures
- Magnetoelectronic and optical properties of nonuniform graphene nanoribbons
- Influence of electric and magnetic fields and -edge bands on the electronic and optical spectra of graphene nanoribbons
- Guided modes and terahertz transitions for two-dimensional Dirac fermions in a smooth double-well potential
- Stacking-configuration-enriched essential properties in bilayer silicenes
- Landau quantization in buckled monolayer GaAs
- Triaxially strained suspended graphene for large-area pseudo-magnetic fields
- Density of states and differential entropy in Dirac materials in crossed magnetic and in-plane electric fields
- Gate-Tunable Optical Extinction of Graphene Nanoribbon Nanoclusters
- Electron and hole lifetime in monolayer graphene
- Na-intercalation compounds and Na-ion batteries
- Decoration of graphene nanoribbons by transition-metal elements