Charge transport and shot noise in ballistic graphene sheet
arXiv:0805.0843 · doi:10.1103/PhysRevB.77.233408
Abstract
The current and the shot noise in a graphene sheet were analyzed in the ballistic regime for arbitrary voltage drops between leads and the sheet in the limit of infinite aspect ratio of the sheet width to its length, when quantization of transversal wave vectors is not essential. The cases of coherent and incoherent ballistic transport were compared. At high voltages the difference with coherent transport is not essential. But at low voltages conductance and Fano-factor dependences for incoherent transport become non-monotonous so that the conductance has a minimum and the Fano factor has a maximum at non-zero voltage bias.
6 pages, 2 figures
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Cited by in corpus (8)
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- Transport in graphene nanostructures with spatially modulated gap and potential
- Klein tunneling through the trapezoidal potential barrier in graphene: conductance and shot noise
- Theory of the sub-Sharvin charge transport in graphene disks
- Effects of the contacts on shot noise in graphene nano-ribbons
- Sub-Sharvin conductance and incoherent shot-noise in graphene disks at magnetic field