Partial Kekule Ordering of Adatoms on Graphene
arXiv:0906.5174 · doi:10.1016/j.ssc.2009.07.008
Abstract
Electronic and transport properties of Graphene, a one-atom thick crystalline material, are sensitive to the presence of atoms adsorbed on its surface. An ensemble of randomly positioned adatoms, each serving as a scattering center, leads to the Bolzmann-Drude diffusion of charge determining the resistivity of the material. An important question, however, is whether the distribution of adatoms is always genuinely random. In this Article we demonstrate that a dilute adatoms on graphene may have a tendency towards a spatially correlated state with a hidden Kekule mosaic order. This effect emerges from the interaction between the adatoms mediated by the Friedel oscillations of the electron density in graphene. The onset of the ordered state, as the system is cooled below the critical temperature, is accompanied by the opening of a gap in the electronic spectrum of the material, dramatically changing its transport properties.
References in corpus (13)
- Electric Field Effect in Atomically Thin Carbon Films
- Detection of Individual Gas Molecules Absorbed on Graphene
- Control of graphene's properties by reversible hydrogenation
- Electrochemically Top Gated Graphene: Monitoring Dopants by Raman Scattering
- Charged Impurity Scattering in Graphene
- Weak localisation magnetoresistance and valley symmetry in graphene
- Friedel oscillations, impurity scattering and temperature dependence of resistivity in graphene
- Metal to insulator transition in epitaxial graphene induced by molecular doping
- Characterization of graphene through anisotropy of constant-energy maps in angle-resolved photoemission
- Long-Range Interaction Between Adatoms in Graphene
- Formation of atomic nanoclusters on graphene sheets
- Energy gap opening in submonolayer lithium on graphene: Local density functional and tight-binding calculations
- Irrational vs. rational charge and statistics in two-dimensional quantum systems
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- Electronic transport in two dimensional graphene
- Experimental evidence of chiral symmetry breaking in Kekulé-ordered graphene
- Ordered states of adatoms on graphene
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- Single-Valley Engineering in Graphene Superlattices
- Peierls-type Instability and Tunable Band Gap in Functionalized Graphene
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- Sublattice ordering in a dilute ensemble of defects in graphene
- Optical lattice quantum simulator for QED in strong external fields: spontaneous pair creation and the Sauter-Schwinger effect
- Triggering a global density wave instability in graphene via local symmetry-breaking
- Emergence of Tertiary Dirac Points in Graphene Moiré Superlattices
- Moiré minibands in graphene heterostructures with almost commensurate sqrt3 x sqrt3 hexagonal crystals
- Resonant transport in Kekule-distorted graphene nanoribbons
- Symmetry breaking effects on spin and electronic transport in graphene
- Self-energy dynamics and mode-specific phonon threshold effect in a Kekulé-ordered graphene
- Coexistence of extended flat band and Kekulé order in Li-intercalated graphene
- Tunable Adsorbate-Adsorbate Interactions on Graphene
- Observation of Kekulé vortices induced in graphene by hydrogen adatoms
- Impurity band induced by point defects in graphene
- Kekulé spiral order at all nonzero integer fillings in twisted bilayer graphene
- Density of states of a graphene in the presence of strong point defects
- Valley-driven Zitterbewegung in Kekulé-distorted graphene
- Light-modulated Josephson effect in Kekulé patterned graphene
- Multi-flavor Dirac fermions in Kekulé-distorted graphene bilayers
- Chiral symmetry restoration in monolayer graphene induced by Kekule distortion
- Topological Magnon Insulator with a Kekule Bond Modulation
- Transport anomaly at the ordering transition for adatoms on graphene
- Twistronics of Kekulé Graphene: Honeycomb and Kagome Flat Bands
- Optoelectronic Fingerprints of Interference between Different Charge Carriers in Graphene Superlattices and Analogies to Twisted Graphene Bilayers
- Modulation of Kekulé adatom ordering due to strain in graphene
- Phase structure of monolayer graphene from effective U(1) gauge theory on honeycomb lattice
- Ferromagnetism and glassiness on the surface of topological insulators
- Unexpected hole doping of graphene by osmium adatoms
- Edge states in a non-Hermitian topological crystalline insulator
- Charge doping induced phase transitions in hydrogenated and fluorinated graphene
- Kekulé valence bond order in the honeycomb lattice optical Su-Schrieffer-Heeger Model and its relevance to Graphene
- Extended transfer matrix method for electron transmission in anisotropic 2D materials: Interplay of strain and (a)periodicity of potentials
- Bound states of charges on top of graphene in magnetic field
- Thermodynamics of localized magnetic moments in a Dirac conductor
- Band structure and optical response of Kekulé-modulated model
- Functionalized Graphene in Quantizing Magnetic Field: The case of bunched impurities
- Dynamical properties of quasiparticles in a tunable Kekulé graphene superlattice
- Heavy going
- Controlled formation of an isolated miniband in bilayer graphene on an almost commensurate substrate
- Floquet-Engineered Valley-Topotronics in Kekulé-Y Bond Textured Graphene Superlattice
- Opening of a Gap in Graphene Due to Supercell Potential: Group Theory Point of View
- Electric field control of spins in bilayer graphene: Local moment formation and local moment interactions