We study the conductance through two types of graphene nanostructures: nanoribbon junctions in which the width changes from wide to narrow, and curved nanoribbons. In the wide-narrow structures, substantial reflection occurs from the wide-narrow interface, in contrast to the behavior of the much studied electron gas waveguides. In the curved nanoribbons, the conductance is very sensitive to details such as whether regions of a semiconducting armchair nanoribbon are included in the curved structure -- such regions strongly suppress the conductance. Surprisingly, this suppression is not due to the band gap of the semiconducting nanoribbon, but is linked to the valley degree of freedom. Though we study these effects in the simplest contexts, t...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
Graphene nanoribbons (GNRs) are promising candidates for next generation integrated circuit (IC) com...
International audienceElectron transport in small graphene nanoribbons is studied by microwave emula...
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...
We study Andreev reflection in graphene nanoribbon/superconductor hybrid junctions. By using a tight...
The successful use of graphene nanoribbons (GNRs) in a variety of applications in nanoelectronics de...
This contribution reports on theoretical studies of electronic transport through graphene nanoribbon...
The successful use of graphene nanoribbons (GNRs) in a variety of applications in nanoelectronics de...
Using first-principles quantum transport simulations, this work examines changes in the total elect...
On-surface synthesis has recently emerged as an effective route towards the atomically precise fabri...
Planar carbon-based electronic devices, including metal/semiconductor junctions, transistors and int...
The electrical resistivity of single-layer graphene nanoribbons has been studied experimentally for ...
ABSTRACT: Graphene nanoribbons (GNRs) are promising candidates for next generation integrated circui...
The electrical resistivity of single-layer graphene nanoribbons has been studied experimentally for ...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
Graphene nanoribbons (GNRs) are promising candidates for next generation integrated circuit (IC) com...
International audienceElectron transport in small graphene nanoribbons is studied by microwave emula...
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...
We study Andreev reflection in graphene nanoribbon/superconductor hybrid junctions. By using a tight...
The successful use of graphene nanoribbons (GNRs) in a variety of applications in nanoelectronics de...
This contribution reports on theoretical studies of electronic transport through graphene nanoribbon...
The successful use of graphene nanoribbons (GNRs) in a variety of applications in nanoelectronics de...
Using first-principles quantum transport simulations, this work examines changes in the total elect...
On-surface synthesis has recently emerged as an effective route towards the atomically precise fabri...
Planar carbon-based electronic devices, including metal/semiconductor junctions, transistors and int...
The electrical resistivity of single-layer graphene nanoribbons has been studied experimentally for ...
ABSTRACT: Graphene nanoribbons (GNRs) are promising candidates for next generation integrated circui...
The electrical resistivity of single-layer graphene nanoribbons has been studied experimentally for ...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
Graphene nanoribbons (GNRs) are promising candidates for next generation integrated circuit (IC) com...
International audienceElectron transport in small graphene nanoribbons is studied by microwave emula...