We have compared results of electronic transport using two different approaches: Dirac vs tight-binding (TB) Hamiltonians to assesses disorder-induced effects in graphene nanoribbons. We apply the proposed Hamiltonians to calculate the density of states, the transmission along the ribbon, and the pseudo-spin polarization (P(E)) in metallic armchair graphene nanoribbons. We clearly show differences between these two approaches in the interference processes, especially in the low-lying energy limit, when the systems are found in the presence of random impurities (disorder). This allows us to find fingerprints associated with each model used. As the disorder increases, more robust electronic transmission (through polarized states in a given su...
Graphene has received great attention due to its exceptional properties, which include corners with ...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
A semiempirical model based on density functional results is used to study the effects of chemical e...
Ab initio methods are used to study the spin-resolved transport properties of graphene nanoribbons (...
The use of the spin of the electron as the ultimate logic bit-in what has been dubbed spintronics-ca...
We study electronic transport in graphene nanoribbons with rough edges. We first consider a model of...
e study the effect of electron-electron interaction and spin on electronic and transport properties ...
In this thesis, we focus on different aspects of electron transport in nanostructured graphene (such...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
We report the transport properties of graphene in the presence of topological and (non-topological) ...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
Based on the tight-binding method and density functional theory, band structures and transport prope...
An extended tight-binding model that includes up to third-nearest-neighbor hopping and a Hubbard mea...
As is common knowledge, armchair graphene nanoribbons (aGNRs) share many electronic features with ca...
Abstract. Since the very first investigations of the electronic properties of graphene, the nature o...
Graphene has received great attention due to its exceptional properties, which include corners with ...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
A semiempirical model based on density functional results is used to study the effects of chemical e...
Ab initio methods are used to study the spin-resolved transport properties of graphene nanoribbons (...
The use of the spin of the electron as the ultimate logic bit-in what has been dubbed spintronics-ca...
We study electronic transport in graphene nanoribbons with rough edges. We first consider a model of...
e study the effect of electron-electron interaction and spin on electronic and transport properties ...
In this thesis, we focus on different aspects of electron transport in nanostructured graphene (such...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
We report the transport properties of graphene in the presence of topological and (non-topological) ...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
Based on the tight-binding method and density functional theory, band structures and transport prope...
An extended tight-binding model that includes up to third-nearest-neighbor hopping and a Hubbard mea...
As is common knowledge, armchair graphene nanoribbons (aGNRs) share many electronic features with ca...
Abstract. Since the very first investigations of the electronic properties of graphene, the nature o...
Graphene has received great attention due to its exceptional properties, which include corners with ...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
A semiempirical model based on density functional results is used to study the effects of chemical e...