Thermoelectric transport properties through a T-shaped single quantum dot
Contribuinte(s) |
UNIVERSIDADE DE SÃO PAULO |
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Data(s) |
20/10/2012
20/10/2012
2010
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Resumo |
We study the thermopower, thermal conductance, electric conductance and the thermoelectric figure of merit for a gate-defined T-shaped single quantum dot (QD). The QD is solved in the limit of strong Coulombian repulsion U -> infinity, inside the dot, and the quantum wire is modeled on a tight-binding linear chain. We employ the X-boson approach for the Anderson impurity model to describe the localized level within the quantum dot. Our results are in qualitative agreement with recent experimental reports and other theoretical researches for the case of a quantum dot embedded into a conduction channel, employing analogies between the two systems. The results for the thermopower sign as a function of the gate voltage (associated with the quantum dot energy) are in agreement with a recent experimental result obtained for a suspended quantum dot. The thermoelectric figure of merit times temperature results indicates that, at low temperatures and in the crossover between the intermediate valence and Kondo regimes, the system might have practical applicability in the development of thermoelectric devices. (c) 2010 Elsevier B.V. All rights reserved. Research Direction-Colombia National University-Bogota (DIB) Research Direction-Colombia National University-Bogota (DIB) Departamento Administrativo de Ciencia, Tecnología e Innovación (COLCIENCIAS) Colombian agency - Colciencias Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq) Brazilian National Research Council - CNPq |
Identificador |
PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, v.389, n.24, p.5814-5821, 2010 0378-4371 http://producao.usp.br/handle/BDPI/29546 10.1016/j.physa.2010.09.002 |
Idioma(s) |
eng |
Publicador |
ELSEVIER SCIENCE BV |
Relação |
Physica A-statistical Mechanics and Its Applications |
Direitos |
restrictedAccess Copyright ELSEVIER SCIENCE BV |
Palavras-Chave | #Quantum dot #Kondo effect #Transport #X-boson #Thermoelectric and thermomagnetic effects #PERIODIC ANDERSON MODEL #THERMOPOWER #Physics, Multidisciplinary |
Tipo |
article original article publishedVersion |