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Scaling approach to tight-binding transport in realistic graphene devices: The case of transverse magnetic focusing

Academic Article
Publication Date:
2016
abstract:
Ultraclean graphene sheets encapsulated between hexagonal boron nitride crystals host two-dimensional electron systems in which low-temperature transport is solely limited by the sample size. We revisit the theoretical problem of carrying out microscopic calculations of nonlocal ballistic transport in such micron-scale devices. By employing the Landauer-Büttiker scattering theory, we propose a scaling approach to tight-binding nonlocal transport in realistic graphene devices. We test our numerical method against experimental data on transverse magnetic focusing (TMF), a textbook example of nonlocal ballistic transport in the presence of a transverse magnetic field. This comparison enables a clear physical interpretation of all the observed features of the TMF signal, including its oscillating sign.
Iris type:
01.01 Articolo in rivista
Keywords:
-
List of contributors:
Valentini, Stefano; Kumar, Abhishek; Polini, Marco; Taddei, Fabio
Authors of the University:
TADDEI FABIO
Handle:
https://iris.cnr.it/handle/20.500.14243/329016
Published in:
PHYSICAL REVIEW. B, CONDENSED MATTER AND MATERIALS PHYSICS
Journal
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http://www.scopus.com/inward/record.url?eid=2-s2.0-84990932176&partnerID=q2rCbXpz
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