Sub-Sharvin Conductance and Incoherent Shot-Noise in Graphene Disks at Magnetic Field

Author:

Rycerz Adam1ORCID,Rycerz Katarzyna2ORCID,Witkowski Piotr1

Affiliation:

1. Institute for Theoretical Physics, Jagiellonian University, Łojasiewicza 11, PL-30348 Kraków, Poland

2. Faculty of Computer Science, AGH University of Krakow, al. Mickiewicza 30, PL-30059 Kraków, Poland

Abstract

Highly doped graphene samples show reduced conductance and enhanced shot-noise power compared with standard ballistic systems in two-dimensional electron gas. These features can be understood within a model that assumes incoherent scattering of Dirac electrons between two interfaces separating the sample and the leads. Here we find, by adopting the above model for the edge-free (Corbino) geometry and by computer simulation of quantum transport, that another graphene-specific feature should be observable when the current flow through a doped disk is blocked by a strong magnetic field. When the conductance drops to zero, the Fano factor approaches the value of F≈0.56, with a very weak dependence on the ratio of the disk radii. The role of finite source-drain voltages and the system behavior when the electrostatic potential barrier is tuned from a rectangular to a parabolic shape are also discussed.

Funder

National Science Centre of Poland

Polish high-performance computing infrastructure PLGrid

Publisher

MDPI AG

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