Electronic and optical properties of strained graphene and other strained 2D materials: a review
arXiv:1611.08627 · doi:10.1088/1361-6633/aa74ef
Abstract
This review presents the state of the art in strain and ripple-induced effects on the electronic and optical properties of graphene. It starts by providing the crystallographic description of mechanical deformations, as well as the diffraction pattern for different kinds of representative deformation fields. Then, the focus turns to the unique elastic properties of graphene, and to how strain is produced. Thereafter, various theoretical approaches used to study the electronic properties of strained graphene are examined, discussing the advantages of each. These approaches provide a platform to describe exotic properties, such as a fractal spectrum related with quasicrystals, a mixed Dirac-Schrödinger behavior, emergent gravity, topological insulator states, in molecular graphene and other 2D discrete lattices. The physical consequences of strain on the optical properties are reviewed next, with a focus on the Raman spectrum. At the same time, recent advances to tune the optical conductivity of graphene by strain engineering are given, which open new paths in device applications. Finally, a brief review of strain effects in multilayered graphene and other promising 2D materials like silicene and materials based on other group-IV elements, phosphorene, dichalcogenide- and monochalcogenide-monolayers is presented, with a brief discussion of interplays among strain, thermal effects, and illumination in the latter material family.
Review article, 66 pages, 65 figures. V2: accepted in Reports on Progress in Physics, with significant changes respect to the previous version
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Cited by in corpus (163)
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- Strain Modulated Superlattices in Graphene
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- Oblique Klein tunneling in 8-Pmmn borophene p-n junctions
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- Correlation-Driven Dimerization and Topological Gap Opening in Isotropically Strained Graphene
- Giant piezoresistive effect and strong band gap tunability in ultrathin InSe upon biaxial strain
- Acoustically Induced Giant Synthetic Hall Voltages in Graphene
- Excitonic emission in van-der-Waals nanotubes of transition metal dichalcogenides
- Designing Moiré Patterns by Strain
- Dirac electron in graphene with magnetic fields arising from first-order intertwining operators
- Electronic and optical conductivity of kekulé-patterned graphene: Intravalley and intervalley transport
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- Graphene Quantum Strain Transistors
- An automated system for strain engineering and straintronics of 2D materials
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- Valley filtering in strain-induced - quantum dots
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- Speeding up the ab initio diffusion Monte Carlo by a smart lattice regularization
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- Quantum paraelastic two-dimensional materials
- Coherent states in magnetized anisotropic 2D Dirac materials
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- Graphene nanodrums as valleytronic devices
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- Quantum tailoring of electronic properties in covalently functionalized graphene: application to ammonia gas detection
- Unfolding optical transition weights of impurity materials for first-principles LCAO electronic structure calculations
- Movable Dirac Points with Ferroelectrics: Kink States and Berry Curvature Dipoles
- Band Gaps and Wavefunctions of Electrons Coupled to Pseudo Electromagnetic Waves in Rippled Graphene
- Twistronics and moiré superlattice physics in 2D transition metal dichalcogenides
- Extended transfer matrix method for electron transmission in anisotropic 2D materials: Interplay of strain and (a)periodicity of potentials
- Tuning magnetism in graphene nanoribbons via strain and adatoms
- Modulation of Landau levels and de Haas-van Alphen oscillation in magnetized graphene by uniaxial tensile strain/ stress
- Kekulé valence bond order in the Hubbard model on the honeycomb lattice with possible lattice distortions for graphene
- Nontrivial temperature behavior of the carrier concentration in the nanostructure "graphene channel on ferroelectric substrate with domain walls"
- Polarization Charge around Impurities in Two-Dimensional Anisotropic Dirac Systems
- Tuning Gap in Corrugated Graphene with Spin Dependence
- Strain-induced thermoelectricity in pentacene
- Tight-binding model with sublattice-asymmetric spin-orbit coupling for square-net nodal line Dirac semimetals
- Influence of Dynamical Floquet Spectrum on the Plasmon Excitations and Exchange Energy of tilted monolayer 1TMoS
- Quantum Transport Straintronics and Mechanical Aharonov-Bohm Effect in Quasi-metallic SWCNTs
- Planar Nernst effect from hidden band geometry in layered two-dimensional materials
- Thermoelectric transport in graphene under strain fields modeled by Dirac oscillators
- Geometrical properties of strained and twisted moiré heterostructures
- Theory for strained graphene beyond the Cauchy-Born rule
- A generalized framework for straintronics in 2D quantum materials using group theory
- Graphene separation and stretching induced by piezoelectric effect of ferroelectric domains: impact on the conductance of graphene channel
- Strain-induced pseudomagnetic and scalar fields in symmetry-enforced Dirac nodes
- Twistraintronics in Square Moire Superlattices of Stacked Graphene Layers
- Coherent states for dispersive pseudo-Landau-levels in strained honeycomb lattices
- Strain- and doping-tunable optical resonance in Kekulé-Y graphene
- Winding Berry dipole on uniaxially strained graphene/hBN/hBN moiré trilayers
- Ballistic guided electrons against disorder in graphene nanoribbons
- Gravitation at the Josephson Junction
- Graphene shapes from quantum elasticity
- Effect of resonant impurity scattering of carriers on Drude peak broadening in uniaxially strained graphene
- Dirac-Rashba fermions and quantum valley Hall insulators in graphene-based 2D heterostructures
- Designer gapped and tilted Dirac cones in lateral graphene superlattices
- Impurity induced broadening of Drude peak in strained graphene
- Vacuum currents in elliptic pseudosphere tubes
- Nodal semimetals in to sharp pseudo-Landau levels by dimensional reduction
- Manipulating Topological Polaritons in Optomechanical Ladders
- Two-dimensional Dirac matter in the semiclassical regime
- Inverse design of strained graphene surfaces for electron control
- Emulating tightly bound electrons in crystalline solids using mechanical waves
- Pseudospin-one particles in the time-periodic dice lattice: A new approach to transport control
- Quantum Atomic Matter Near Two-Dimensional Materials in Microgravity
- Photon-mediated electronic correlation effects in irradiated two-dimensional Dirac systems
- Interaction-driven charge textures and unconventional superconductivity in strained monolayer graphene
- Study of simulated Bloch oscillations in strained graphene using neural networks
- Enhanced current rectification in graphene nanoribbons: Effects of geometries and orientations of nanopores
- Moiré-driven equilibrium of perturbations in moiré systems
- Nontrivial magnetic field related phenomena in the single-layer graphene on ferroelectric substrate
- Tuning Terahertz Optomechanics of MoS2 Bilayers with Homogeneous In-plane Strain
- Floquet Control of Electron and Exciton Transport in Kekulé-Distorted Graphene
- Straintronics and twistronics in bilayer graphene
- Mode-Resolved Multiband Ballistic Transport and Conductance Thresholds in Bilayer Graphene Junctions
- Floquet second-order topological insulator in strained graphene
- Confinement in bilayer graphene via intra- and inter-layer interactions