We report on a first-principles study of the conductance through graphene suspended between Al contacts as a function of junction length, width, and orientation. The charge transfer at the leads and into the freestanding section gives rise to an electron-hole asymmetry in the conductance and in sufficiently long junctions induces two conductance minima at the energies of the Dirac points for suspended and clamped regions, respectively. We obtain the potential profile along a junction caused by doping and provide parameters for effective model calculations of the junction conductance with weakly interacting metallic leads
A systematic investigation of graphene edge contacts is provided. Intentionally patterning monolayer...
We use the nonequilibrium Green function method in the ballistic limit to provide a quantitative des...
A systematic investigation of graphene edge contacts is provided. Intentionally patterning monolayer...
We report on a first-principles study of the conductance through graphene suspended between Al conta...
4 pages, 5 figures, Supplementary information will come soonInternational audienceWe perform electri...
ABSTRACT: Graphene is believed to be an excellent candidate material for next-generation electronic ...
Graphene is believed to be an excellent candidate material for next-generation electronic devices. H...
The electronic transport across metal-graphene edge-contact structures is studied by first principle...
We present a technique to fabricate tunnel junctions between graphene and Al and Cu, with a Si back ...
We present a study on the metal-graphene contact properties. Utilizing a dual-gate field-effect tran...
One of the main technological issues to be solved in graphene technology is the realization of graph...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
One of the main technological issues to be solved in graphene technology is the realization of graph...
The unique structural and electronic characteristics of graphene make it an attractive contact for f...
The unique structural and electronic characteristics of graphene make it an attractive contact for f...
A systematic investigation of graphene edge contacts is provided. Intentionally patterning monolayer...
We use the nonequilibrium Green function method in the ballistic limit to provide a quantitative des...
A systematic investigation of graphene edge contacts is provided. Intentionally patterning monolayer...
We report on a first-principles study of the conductance through graphene suspended between Al conta...
4 pages, 5 figures, Supplementary information will come soonInternational audienceWe perform electri...
ABSTRACT: Graphene is believed to be an excellent candidate material for next-generation electronic ...
Graphene is believed to be an excellent candidate material for next-generation electronic devices. H...
The electronic transport across metal-graphene edge-contact structures is studied by first principle...
We present a technique to fabricate tunnel junctions between graphene and Al and Cu, with a Si back ...
We present a study on the metal-graphene contact properties. Utilizing a dual-gate field-effect tran...
One of the main technological issues to be solved in graphene technology is the realization of graph...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
One of the main technological issues to be solved in graphene technology is the realization of graph...
The unique structural and electronic characteristics of graphene make it an attractive contact for f...
The unique structural and electronic characteristics of graphene make it an attractive contact for f...
A systematic investigation of graphene edge contacts is provided. Intentionally patterning monolayer...
We use the nonequilibrium Green function method in the ballistic limit to provide a quantitative des...
A systematic investigation of graphene edge contacts is provided. Intentionally patterning monolayer...