Enhancing entanglement and total correlation dynamics via local unitaries

dc.contributor.authorVarela, Joab Morais
dc.contributor.authorNery, Ranieri Vieira
dc.contributor.authorMoreno Filho, Marcos George Magalhães
dc.contributor.authorViana, Alice Caroline de Oliveira
dc.contributor.authorLandi, Gabriel
dc.contributor.authorAraújo, Rafael Chaves Souto
dc.date.accessioned2025-04-24T20:40:12Z
dc.date.available2025-04-24T20:40:12Z
dc.date.issued2022-02-22
dc.description.resumoThe interaction with the environment is one of the main obstacles to be circumvented in practical implementations of quantum information tasks. The use of local unitaries, while not changing the initial entanglement present in a given state, can enormously change its dynamics through a noisy channel, and consequently its ability to be used as a resource. In this way, local unitaries provide an easy and accessible way to enhance quantum correlations in a variety of different experimental platforms. Given an initial entangled state and a certain noisy channel, what are the local unitaries providing the most robust dynamics? In this paper we solve this question considering two-qubit states, together with paradigmatic and relevant noisy channels, showing its consequences for teleportation protocols and identifying cases where the most robust states are not necessarily the ones imprinting the least information about themselves into the environment. We also derive a general multipartite law relating the interplay between the total correlations in the system and environment with their mutual information built up over the noisy dynamics. Finally, we employ the IBM Quantum Experience to provide a proof-of-principle experimental implementation of our resultspt_BR
dc.identifier.citationVARELA, Joab Morais; NERY, Ranieri Vieira; MORENO FILHO, Marcos George Magalhães ; VIANA, Alice Caroline de Oliveira; LANDI, Gabriel; ARAUJO, Rafael Chaves Souto. Enhancing entanglement and total correlation dynamics via local unitaries. Physical Review A, v. 105, p. 022430, 2022. DOI 10.1103/PhysRevA.105.022430. Disponível em: https://journals.aps.org/pra/abstract/10.1103/PhysRevA.105.022430. Acesso em: 18 mar. 2025.pt_BR
dc.identifier.doi10.1103/PhysRevA.105.022430
dc.identifier.issne2469-9934
dc.identifier.urihttps://repositorio.ufrn.br/handle/123456789/63522
dc.languageenpt_BR
dc.publisherPhysical Review Apt_BR
dc.subjectEntanglement manipulationpt_BR
dc.subjectManipulação de emaranhamentopt_BR
dc.subjectQuantum channelspt_BR
dc.subjectCanais quânticospt_BR
dc.subjectQuantum entanglementpt_BR
dc.subjectEmaranhamento quânticopt_BR
dc.titleEnhancing entanglement and total correlation dynamics via local unitariespt_BR
dc.typearticlept_BR

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