| Literature DB >> 27295198 |
Pascal Gehring1, Hatef Sadeghi2, Sara Sangtarash2, Chit Siong Lau1, Junjie Liu1, Arzhang Ardavan3, Jamie H Warner1, Colin J Lambert2, G Andrew D Briggs1, Jan A Mol1.
Abstract
We report quantum interference effects in the electrical conductance of chemical vapor deposited graphene nanoconstrictions fabricated using feedback controlled electroburning. The observed multimode Fabry-Pérot interferences can be attributed to reflections at potential steps inside the channel. Sharp antiresonance features with a Fano line shape are observed. Theoretical modeling reveals that these Fano resonances are due to localized states inside the constriction, which couple to the delocalized states that also give rise to the Fabry-Pérot interference patterns. This study provides new insight into the interplay between two fundamental forms of quantum interference in graphene nanoconstrictions.Entities:
Keywords: Fabry−Pérot; Fano resonance; Graphene; break junction; quantum interference
Year: 2016 PMID: 27295198 DOI: 10.1021/acs.nanolett.6b01104
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189