We present a detailed numerical study of the electronic properties of single-layer graphene with resonant (hydrogen) impurities and vacancies within a framework of noninteracting tight-binding model on a honeycomb lattice. The algorithms are based on the numerical solution of the time-dependent Schrodinger equation and applied to calculate the density of states, quasieigenstates, ac and dc conductivities of large samples containing millions of atoms. Our results give a consistent picture of evolution of electronic structure and transport properties of functionalized graphene in a broad range of concentration of impurities (from graphene to graphane), and show that the formation of impurity band is the main factor determining electrical and ...
We study the effects of impurities on the electronic properties of graphene. The tight-binding Hamil...
arXiv:1506.00869v1We report the electronic properties of two-dimensional systems made of graphene na...
Since the initial demonstration of the ability to experimentally isolate a single graphene sheet, a ...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
We present a detailed numerical study of the electronic transport properties of bilayer and trilayer...
We present a detailed numerical study of the electronic transport properties of bilayer and trilayer...
We discuss transport properties of graphene related to the resonant scattering from impurities and d...
We report the transport properties of graphene in the presence of topological and (non-topological) ...
We report the transport properties of graphene in the presence of topological and (non-topological) ...
We present a detailed numerical study of the electronic transport properties of bilayer and trilayer...
We describe the electronic conductivity, as a function of the Fermi energy, in the Bernal bilayer gr...
We study the effects of impurities on the electronic properties of graphene. The tight-binding Hamil...
arXiv:1506.00869v1We report the electronic properties of two-dimensional systems made of graphene na...
Since the initial demonstration of the ability to experimentally isolate a single graphene sheet, a ...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
We present a detailed numerical study of the electronic properties of single-layer graphene with res...
We present a detailed numerical study of the electronic transport properties of bilayer and trilayer...
We present a detailed numerical study of the electronic transport properties of bilayer and trilayer...
We discuss transport properties of graphene related to the resonant scattering from impurities and d...
We report the transport properties of graphene in the presence of topological and (non-topological) ...
We report the transport properties of graphene in the presence of topological and (non-topological) ...
We present a detailed numerical study of the electronic transport properties of bilayer and trilayer...
We describe the electronic conductivity, as a function of the Fermi energy, in the Bernal bilayer gr...
We study the effects of impurities on the electronic properties of graphene. The tight-binding Hamil...
arXiv:1506.00869v1We report the electronic properties of two-dimensional systems made of graphene na...
Since the initial demonstration of the ability to experimentally isolate a single graphene sheet, a ...