We present a theoretical study of resonance characteristics in graphene from adatoms with s or p(z) character binding in top, bridge, and hollow positions. The adatoms are described by two tight-binding parameters: on-site energy and hybridization strength. We explore a wide range of different magnitudes of these parameters by employing T-matrix calculations in the single adatom limit and by tight-binding supercell calculations for dilute adatom coverage. We calculate the density of states and the momentum relaxation rate and extract the resonance level and resonance width. The top position with a large hybridization strength or, equivalently, small on-site energy, induces resonances close to zero energy. The bridge position, compared to to...
Graphene consists of an atom-thick layer of carbon atoms arranged in a honeycomb lattice, and its lo...
We have recently shown that by using a scaling approach for randomly distributed topological defects...
The effect of electron-impurity scattering on momentum and spin relaxation times in graphene is stud...
We present a theoretical study of resonance characteristics in graphene from adatoms with s or p(z) ...
Adsorbates can drastically alter physical properties of graphene. Particularly important are adatoms...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
pre-printThe interaction of two resonant impurities in graphene has been predicted to have a long-ra...
In this paper, we describe the formation of local resonances in graphene in the presence of magnetic...
The scattering of two-dimensional massless Dirac fermions from local spin-orbit interactions with an...
We present a joint experiment-theory study on the role of fluorine adatoms in spin and momentum scat...
We propose that the observed spin relaxation in bilayer graphene is due to resonant scattering by ma...
We give a tutorial account of our recently proposed mechanism for spin relaxation based on spin-flip...
International audienceResonant scattering of electrons with low energies (as compared to the bandwid...
We present a combined DFT and model Hamiltonian analysis of spin-orbit coupling in graphene induced ...
Graphene consists of an atom-thick layer of carbon atoms arranged in a honeycomb lattice, and its lo...
We have recently shown that by using a scaling approach for randomly distributed topological defects...
The effect of electron-impurity scattering on momentum and spin relaxation times in graphene is stud...
We present a theoretical study of resonance characteristics in graphene from adatoms with s or p(z) ...
Adsorbates can drastically alter physical properties of graphene. Particularly important are adatoms...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
pre-printThe interaction of two resonant impurities in graphene has been predicted to have a long-ra...
In this paper, we describe the formation of local resonances in graphene in the presence of magnetic...
The scattering of two-dimensional massless Dirac fermions from local spin-orbit interactions with an...
We present a joint experiment-theory study on the role of fluorine adatoms in spin and momentum scat...
We propose that the observed spin relaxation in bilayer graphene is due to resonant scattering by ma...
We give a tutorial account of our recently proposed mechanism for spin relaxation based on spin-flip...
International audienceResonant scattering of electrons with low energies (as compared to the bandwid...
We present a combined DFT and model Hamiltonian analysis of spin-orbit coupling in graphene induced ...
Graphene consists of an atom-thick layer of carbon atoms arranged in a honeycomb lattice, and its lo...
We have recently shown that by using a scaling approach for randomly distributed topological defects...
The effect of electron-impurity scattering on momentum and spin relaxation times in graphene is stud...