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Synchronization in a semiclassical Kuramoto model

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dc.coverage.spatial Colombia es_CO
dc.creator Hermoso de Mendoza, Ignacio
dc.creator Pachón, Leonardo Augusto
dc.creator Gómez-Gardeñes, Jesús
dc.creator Zueco, David
dc.date.accessioned 2019-03-17T21:06:02Z
dc.date.available 2019-03-17T21:06:02Z
dc.date.issued 2016-02-08
dc.identifier.uri http://repositorio.colciencias.gov.co/handle/11146/34055
dc.description.abstract Synchronization is a ubiquitous phenomenon occurring in sociai, biological, and technological systems when the internal rythms of their constituents are adapted to be in unison as a result of their coupling. This natural tendency towards dynamical consensus has spurred a large body of theoretical and experimental research in recent decades. The Kuramoto model constitutes the most studied and paradigmatic framework in which to study synchronization. In particular, it shows how synchronization appears as a phase transition from a dynamically disordered state at some critical value for the coupling strength between the interacting units. The critical properties of the synchronization transition of this model have been widely studied and many variants of its formulations have been considered to address different physical realizations. However, the Kuramoto model has been studied only within the domain of classical dynamics,-thus neglecting its applications for the study of quantum synchronization phenomena. Based on a system-bath approach and within the Feynman path-integral formalism, we derive equations for the Kuramoto model by taking into account the first quantum fluctuations We also analyze its critical properties, the main result being the derivation of the value for the synchronization onset. This critical coupling increases its value as quantumness increases, as a consequence of the possibility of 8 tunneling that quantum fluctuations provide. es_CO
dc.description.sponsorship Departamento Administrativo de Ciencia, Tecnología e Innovación [CO] Colciencias es_CO
dc.format pdf es_CO
dc.format.extent 12 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.source Physical Review E vol 90, 052904 (12 pp.). 2014 es_CO
dc.title Synchronization in a semiclassical Kuramoto model es_CO
dc.type info:eu-repo/semantics/article es_CO
dc.date.embargoEnd info:eu-repo/date/embargoEnd/2024-01-31 es_CO
dc.type.hasversion info:eu-repo/semantics/publishedVersion 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 leonardo.pachon@fisica.udea.edu.co es_CO
dc.identifier.bibliographicCitation Contiene 46 referencias bibliográficas. Véase el documento adjunto es_CO
dc.identifier.doi 10.1103/PhysRevE.90.052904
dc.subject.lemb Modelo de Kuramoto es_CO
dc.subject.lemb Trayectoria de Feynman es_CO
dc.subject.lemb Física matemática es_CO
dc.subject.lemb Teoría cuántica es_CO
dc.subject.spines Dinámica de sistemas es_CO
dc.subject.spines Fuerzas moleculares es_CO
dc.subject.spines Teoría de campos (física) es_CO
dc.subject.spines Termodinámica es_CO
col.contrato 0005-2013 es_CO
col.tipo.esp Artículos de investigación es_CO


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