Universal Fano factor and anomalous I-V characteristics in weakly interacting quantum dots

We study interaction effects in quantum dots coupled to perfectly conducting leads via barriers of arbitrary transparencies and embedded in an electromagnetic environment characterized by a fixed external impedance. Combining a recently proposed renormalization group equation for the semiclassical r...

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Bibliographic Details
Main Author: Souza, André Maurício Conceição de (author)
Other Authors: Macedo, Antônio Murilo Santos (author)
Format: article
Language:eng
Published: 2013
Subjects:
Online Access:http://link.aps.org/doi/10.1103/PhysRevB.72.165340
https://ri.ufs.br/handle/riufs/464
Country:Brazil
Oai:oai:ir01405a:riufs/464
Description
Summary:We study interaction effects in quantum dots coupled to perfectly conducting leads via barriers of arbitrary transparencies and embedded in an electromagnetic environment characterized by a fixed external impedance. Combining a recently proposed renormalization group equation for the semiclassical regime of this system with an extended version of circuit theory, we study the Fano factor and the I-V characteristics in the low-temperature and low-energy regime. The Fano factor exhibits a sequence of universal plateaus as a function of the transparencies of the barriers. We also show that a recently discovered quantum transition, at intermediate values of the barrier’s transparencies, leads to an anomalous transport regime characterized by a Fano factor that is the harmonic average of its values in adjacent plateaus. Our result extends a previous classification scheme for mesoscopic conductors.