English

Manipulating chiral transmission by gate geometry: switching in graphene with transmission gaps

Mesoscale and Nanoscale Physics 2013-12-20 v1

Abstract

We explore the chiral transmission of electrons across graphene heterojunctions for electronic switching using gate geometry alone. A sequence of gates is used to collimate and orthogonalize the chiral transmission lobes across multiple junctions, resulting in negligible overall current. The resistance of the device is enhanced by several orders of magnitude by biasing the gates into the bipolar npnnpn doping regime, as the ON state in the near homogeneous nnnnn^-n regime remains highly conductive. The mobility is preserved because the switching involves a transmission gap instead of a structural band-gap that would reduce the number of available channels of conduction. Under certain conditions this transmission gap is highly gate tunable, allowing a subthermal turn-on that beats the Landauer bound on switching energy limiting present day digital electronics.

Keywords

Cite

@article{arxiv.1305.7171,
  title  = {Manipulating chiral transmission by gate geometry: switching in graphene with transmission gaps},
  author = {Redwan N. Sajjad and Avik W. Ghosh},
  journal= {arXiv preprint arXiv:1305.7171},
  year   = {2013}
}