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dc.contributor.authorApollaro, Tony John George-
dc.contributor.authorPalma, G. Massimo-
dc.contributor.authorMarino, Jamir-
dc.date.accessioned2022-07-29T09:53:50Z-
dc.date.available2022-07-29T09:53:50Z-
dc.date.issued2016-
dc.identifier.citationApollaro, T. J., Palma, G. M., & Marino, J. (2016). Entanglement entropy in a periodically driven quantum Ising ring. Physical Review B, 94(13), 134304.en_GB
dc.identifier.urihttps://www.um.edu.mt/library/oar/handle/123456789/100143-
dc.description.abstractWe numerically study the dynamics of entanglement entropy, induced by an oscillating time periodic driving of the transverse field, h ( t ) , of a one-dimensional quantum Ising ring. We consider several realizations of h ( t ) , and we find a number of results in analogy with entanglement entropy dynamics induced by a sudden quantum quench. After a short-time relaxation, the dynamics of entanglement entropy synchronizes with h ( t ) , displaying an oscillatory behavior at the frequency of the driving. Synchronization in the dynamics of entanglement entropy is spoiled by the appearance of quasirevivals which fade out in the thermodynamic limit, and which we interpret using a quasiparticle picture adapted to periodic drivings. We show that the time-averaged entanglement entropy in the synchronized regime obeys a volume law scaling with the subsystem's size. Such result is reminiscent of a thermal state or a generalized Gibbs ensemble, although the system does not heat up towards infinite temperature as a consequence of the integrability of the model.en_GB
dc.language.isoenen_GB
dc.publisherAmerican Physical Societyen_GB
dc.rightsinfo:eu-repo/semantics/restrictedAccessen_GB
dc.subjectQuantum computingen_GB
dc.subjectQuantum systemsen_GB
dc.subjectQuantum theory -- Statistical methodsen_GB
dc.subjectPhase transformations (Statistical physics)en_GB
dc.subjectMany-body problemen_GB
dc.titleEntanglement entropy in a periodically driven quantum Ising ringen_GB
dc.typearticleen_GB
dc.rights.holderThe copyright of this work belongs to the author(s)/publisher. The rights of this work are as defined by the appropriate Copyright Legislation or as modified by any successive legislation. Users may access this work and can make use of the information contained in accordance with the Copyright Legislation provided that the author must be properly acknowledged. Further distribution or reproduction in any format is prohibited without the prior permission of the copyright holder.en_GB
dc.description.reviewedpeer-revieweden_GB
dc.identifier.doi10.1103/PhysRevB.94.134304-
dc.publication.titlePhysical Review Ben_GB
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