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Heat Current Characteristics in Nanojunctions with Superconducting Leads

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dc.coverage.spatial Colombia es_CO
dc.creator Oettinger, David
dc.creator Chitra, R.
dc.creator Restrepo, Juliana
dc.date.accessioned 2019-03-17T21:32:47Z
dc.date.available 2019-03-17T21:32:47Z
dc.date.issued 2014-02-12
dc.identifier.uri http://repositorio.colciencias.gov.co/handle/11146/34070
dc.description.abstract Controlled heat flow has been a longstanding quest in solid state physics as this is a fundamental requisite for thermotronics. Recently, there has been a lot of interest in nanoscale hybrid systems as possible candidates for thermal devices. In this context, we study the heat current in the simplest hybrid device of a two level system weakly coupled to two heat baths. We use the reduced density matrix approach coupled with a simple Born-Markov approximation to calculate the heat current in the steady state. We consider different kinds of reservoirs and show that the nature of the reservoir plays a very important role in determining the thermal characteristics of the device. In particular, we investigate the effectiveness of a conventional superconductor as a reservoir with regard to manipulating the heat current. In the emergent temperature characteristics, we find that superconductivity in the reservoirs leads to enhanced thermal currents and that the superconducting phase transition is clearly visible in the heat current. We observe negative differential thermal conductance and a pronounced rectification of the heat current making this a good building block for a quantum thermal diode. es_CO
dc.description.sponsorship Departamento Administrativo de Ciencia, Tecnología e Innovación [CO] Colciencias es_CO
dc.format pdf es_CO
dc.format.extent 10 páginas es_CO
dc.language.iso eng es_CO
dc.relation.ispartof Baños térmicos cuánticos: influencia de la no-gaussianidad estadística y no-localidad dinámica en la evolución temporal de sistemas cuánticos abiertos. La publicación completa está disponible en : <a href="http://repositorio.colciencias.gov.co/handle/11146/34053" target="blank">http://repositorio.colciencias.gov.co/handle/11146/34053</a> es_CO
dc.rights info:eu-repo/semantics/embargoedAccess es_CO
dc.title Heat Current Characteristics in Nanojunctions with Superconducting Leads es_CO
dc.type info:eu-repo/semantics/other.generacióndecontenidos es_CO
dc.date.embargoEnd info:eu-repo/date/embargoEnd/2024-01-31 es_CO
dc.type.hasversion info:eu-repo/semantics/allowedVersion es_CO
dc.description.projectid 1115-569-34912 es_CO
col.date.proyecto 2013-02
col.programa.colciencias Programa Nacional de Ciencias Básicas es_CO
col.comunidadvinculada Comunidad científica colombiana es_CO
dc.creator.corporativo Universidad de Antioquia, UdeA es_CO
dc.audience Administradores de ciencia y tecnología es_CO
dc.audience Investigadores es_CO
dc.description.isproject no es_CO
dc.creator.mail julianrestrepo@uan.edu.co es_CO
dc.subject.lemb Termodinámica es_CO
dc.subject.lemb Modelos matemáticos es_CO
dc.subject.lemb Teoría de Born-Markov es_CO
dc.subject.spines Métodos de simulación es_CO
dc.subject.spines Fuerzas moleculares es_CO
dc.subject.spines Propiedades termodinámicas es_CO
col.contrato 0005-2013 es_CO
col.tipo.esp Generación de contenidos impresos, radiales, audiovisuales, multimedia, virtuales y Creative Commons es_CO


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