We study the behavior of the local density of states in an armchair graphene nanoribbon with a potential barrier, in the presence of realistic disorder due to charged impurities. The main purpose of this study it to provide, for a simplified case, information useful to establish the feasibility of an estimation of the characteristics of the barrier from a measurement of the behavior of the local density of states in an equilibrium condition, as recently suggested in the literature. We discuss to which extent disorder limits the information that can be extracted from the local density of states
Perturbations of the two dimensional carbon lattice of graphene, such as grain boundaries, have sign...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
Defects in graphene give rise to zero modes that are often related to the sharp peak in the local de...
We study the interplay between the edge states and a single impurity in a zigzag graphene nanoribbon...
We have compared results of electronic transport using two different approaches: Dirac vs tight-bind...
We report the transport properties of graphene in the presence of topological and (non-topological) ...
We demonstrate that fluctuations of the local density of states (LDOS) in strongly disordered graphe...
We present exact analytical calculations of scanning tunneling currents in locally disordered graphe...
We consider gated graphene nanoribbons subject to Berry-Mondragon boundary conditions in the presenc...
We consider gated graphene nanoribbons subject to Berry-Mondragon boundary conditions in t...
We study electronic transport in graphene nanoribbons with rough edges. We first consider a model of...
We report a detailed investigation of the interplay between size quantization and local scattering c...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
We investigate the electron transport through a zigzag graphene nanoribbon with a staggered sublatti...
In this paper, the average density of states (ADOS) in graphene with binary alloy disorders is calcu...
Perturbations of the two dimensional carbon lattice of graphene, such as grain boundaries, have sign...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
Defects in graphene give rise to zero modes that are often related to the sharp peak in the local de...
We study the interplay between the edge states and a single impurity in a zigzag graphene nanoribbon...
We have compared results of electronic transport using two different approaches: Dirac vs tight-bind...
We report the transport properties of graphene in the presence of topological and (non-topological) ...
We demonstrate that fluctuations of the local density of states (LDOS) in strongly disordered graphe...
We present exact analytical calculations of scanning tunneling currents in locally disordered graphe...
We consider gated graphene nanoribbons subject to Berry-Mondragon boundary conditions in the presenc...
We consider gated graphene nanoribbons subject to Berry-Mondragon boundary conditions in t...
We study electronic transport in graphene nanoribbons with rough edges. We first consider a model of...
We report a detailed investigation of the interplay between size quantization and local scattering c...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
We investigate the electron transport through a zigzag graphene nanoribbon with a staggered sublatti...
In this paper, the average density of states (ADOS) in graphene with binary alloy disorders is calcu...
Perturbations of the two dimensional carbon lattice of graphene, such as grain boundaries, have sign...
We study numerically the effects of edge and bulk disorder on the conductance of graphene nanoribbon...
Defects in graphene give rise to zero modes that are often related to the sharp peak in the local de...