Based on the well known nearest-neighbor tight-binding approximation for graphene, an exact expression for the electronic conductance across a zigzag nanoribbon/armchair nanotube junction is presented for non-interacting electrons. The junction results from the removal of a half-row of zigzag dimers in armchair nanotube, or equivalently by partial rolling of zigzag nanoribbon and insertion of a half-row of zigzag dimers in between. From the former point of view, a discrete form of Dirichlet condition is imposed on a zigzag half-line of dimers assuming the vanishing of wave function outside the physical structure. A closed form expression is provided for the reflection and transmission moduli for the outgoing wave modes for each given electr...
The electronic transmission and conductance of Dirac electrons in an armchair graphene nanoribbon un...
Abstract. We demonstrate the possibility of computing the intensity of electronic transport through ...
International audienceElectron transport in small graphene nanoribbons is studied by microwave emula...
An investigation of the electronic conductance, based on the nearest-neighbor tight-binding approxim...
The transmission through side-contacted single-wall carbon nanotubes is investigated within the Land...
9 páginas, 11 figuras.-- PACS numbers: 81.05.U-, 73.20.-r, 73.63.Fg, 85.75.-dThe properties of carbo...
In recent years, there has been much interest in modelling graphene nanoribbons as they have great p...
We study the conductance through two types of graphene nanostructures: nanoribbon junctions in which...
We study the conductance through two types of graphene nanostructures: nanoribbon junctions in which...
A junction of monolayer and bilayer graphene nanoribbons is investigated using the tight-binding app...
We study the conductance through two types of graphene nanostructures: nanoribbon junctions in which...
We propose a graphene nanoribbon-based heterojunction, where a defect-free interface separates two z...
This contribution reports on theoretical studies of electronic transport through graphene nanoribbon...
All-carbon systems have proven to present interesting transport properties and are often used in ele...
Based on the nearest-neighbor tight-binding model, we present analytical description of single-mode ...
The electronic transmission and conductance of Dirac electrons in an armchair graphene nanoribbon un...
Abstract. We demonstrate the possibility of computing the intensity of electronic transport through ...
International audienceElectron transport in small graphene nanoribbons is studied by microwave emula...
An investigation of the electronic conductance, based on the nearest-neighbor tight-binding approxim...
The transmission through side-contacted single-wall carbon nanotubes is investigated within the Land...
9 páginas, 11 figuras.-- PACS numbers: 81.05.U-, 73.20.-r, 73.63.Fg, 85.75.-dThe properties of carbo...
In recent years, there has been much interest in modelling graphene nanoribbons as they have great p...
We study the conductance through two types of graphene nanostructures: nanoribbon junctions in which...
We study the conductance through two types of graphene nanostructures: nanoribbon junctions in which...
A junction of monolayer and bilayer graphene nanoribbons is investigated using the tight-binding app...
We study the conductance through two types of graphene nanostructures: nanoribbon junctions in which...
We propose a graphene nanoribbon-based heterojunction, where a defect-free interface separates two z...
This contribution reports on theoretical studies of electronic transport through graphene nanoribbon...
All-carbon systems have proven to present interesting transport properties and are often used in ele...
Based on the nearest-neighbor tight-binding model, we present analytical description of single-mode ...
The electronic transmission and conductance of Dirac electrons in an armchair graphene nanoribbon un...
Abstract. We demonstrate the possibility of computing the intensity of electronic transport through ...
International audienceElectron transport in small graphene nanoribbons is studied by microwave emula...