Electronic transport in the lowest Landau level of disordered graphene sheets placed in a homogeneous perpendicular magnetic field is a long-standing and cumbersome problem which defies a conclusive solution for several years. Because the modeled system lacks an intrinsic small parameter, the theoretical picture is infested with singularities and anomalies. We propose an analytical approach to the conductivity based on the analysis of the diffusive processes, and we calculate the density of states, the diffusion coefficient and the static conductivity. The obtained results are not only interesting from the purely theoretical point of view but have a practical significance as well, especially for the development of the novel high-precision c...
The phase space for graphene's minimum conductivity σ[subscript min] is mapped out using Landauer th...
An efficient computational methodology is used to explore charge transport properties in chemically ...
International audienceWe report on the formation of critical states in disordered graphene, at the o...
Electronic transport in the lowest Landau level of disordered graphene sheets placed in a homogeneou...
We study the electronic transport in the lowest Landau level of disordered two-dimensional semimetal...
We report on robust features of the longitudinal conductivity (σxx) of the graphene zero-energy Land...
10 pages, 5 figuresInternational audienceIn this paper we present generic properties of quantum tran...
We study electron transport properties of a monoatomic graphite layer (graphene) with different type...
We present a detailed numerical study of the electronic transport properties of bilayer and trilayer...
Using the recursive Green\u27s function method, we study the problem of electron transport in a diso...
In recent years, predictive computational modeling has become a cornerstone for the study of fundame...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
We present a survey of the effect of vacancies on quantum transport in graphene, exploring conductio...
We present a survey of the effect of vacancies on quantum transport in graphene, exploring conductio...
We find that the empirical relation between the longitudinal and Hall resistivities (i.e., R-xx and ...
The phase space for graphene's minimum conductivity σ[subscript min] is mapped out using Landauer th...
An efficient computational methodology is used to explore charge transport properties in chemically ...
International audienceWe report on the formation of critical states in disordered graphene, at the o...
Electronic transport in the lowest Landau level of disordered graphene sheets placed in a homogeneou...
We study the electronic transport in the lowest Landau level of disordered two-dimensional semimetal...
We report on robust features of the longitudinal conductivity (σxx) of the graphene zero-energy Land...
10 pages, 5 figuresInternational audienceIn this paper we present generic properties of quantum tran...
We study electron transport properties of a monoatomic graphite layer (graphene) with different type...
We present a detailed numerical study of the electronic transport properties of bilayer and trilayer...
Using the recursive Green\u27s function method, we study the problem of electron transport in a diso...
In recent years, predictive computational modeling has become a cornerstone for the study of fundame...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
We present a survey of the effect of vacancies on quantum transport in graphene, exploring conductio...
We present a survey of the effect of vacancies on quantum transport in graphene, exploring conductio...
We find that the empirical relation between the longitudinal and Hall resistivities (i.e., R-xx and ...
The phase space for graphene's minimum conductivity σ[subscript min] is mapped out using Landauer th...
An efficient computational methodology is used to explore charge transport properties in chemically ...
International audienceWe report on the formation of critical states in disordered graphene, at the o...