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Exact dynamics of single-qubit-gate fidelities under the measurement-based quantum computation scheme

dc.contributor.authorArruda, L. G. E.
dc.contributor.authorFanchini, Felipe Fernandes [UNESP]
dc.contributor.authorNapolitano, R. D. J.
dc.contributor.authorHornos, J. E. M.
dc.contributor.authorCaldeira, A. O.
dc.contributor.institutionUniversidade de São Paulo (USP)
dc.contributor.institutionUniversidade Estadual Paulista (Unesp)
dc.contributor.institutionUniversidade Estadual de Campinas (UNICAMP)
dc.date.accessioned2014-05-20T15:34:14Z
dc.date.available2014-05-20T15:34:14Z
dc.date.issued2012-10-19
dc.description.abstractMeasurement-based quantum computation is an efficient model to perform universal computation. Nevertheless, theoretical questions have been raised, mainly with respect to realistic noise conditions. In order to shed some light on this issue, we evaluate the exact dynamics of some single-qubit-gate fidelities using the measurement-based quantum computation scheme when the qubits which are used as a resource interact with a common dephasing environment. We report a necessary condition for the fidelity dynamics of a general pure N-qubit state, interacting with this type of error channel, to present an oscillatory behavior, and we show that for the initial canonical cluster state, the fidelity oscillates as a function of time. This state fidelity oscillatory behavior brings significant variations to the values of the computational results of a generic gate acting on that state depending on the instants we choose to apply our set of projective measurements. As we shall see, considering some specific gates that are frequently found in the literature, the fast application of the set of projective measurements does not necessarily imply high gate fidelity, and likewise the slow application thereof does not necessarily imply low gate fidelity. Our condition for the occurrence of the fidelity oscillatory behavior shows that the oscillation presented by the cluster state is due exclusively to its initial geometry. Other states that can be used as resources for measurement-based quantum computation can present the same initial geometrical condition. Therefore, it is very important for the present scheme to know when the fidelity of a particular resource state will oscillate in time and, if this is the case, what are the best times to perform the measurements.en
dc.description.affiliationUniv São Paulo, Inst Fis Sao Carlos, BR-13560970 São Paulo, Brazil
dc.description.affiliationUniv Estadual Paulista, Fac Ciencias, Dept Fis, BR-17033360 São Paulo, Brazil
dc.description.affiliationUniv Estadual Campinas, Inst Fis Gleb Wataghin, BR-13083970 São Paulo, Brazil
dc.description.affiliationUnespUniv Estadual Paulista, Fac Ciencias, Dept Fis, BR-17033360 São Paulo, Brazil
dc.format.extent8
dc.identifierhttp://dx.doi.org/10.1103/PhysRevA.86.042326
dc.identifier.citationPhysical Review A. College Pk: Amer Physical Soc, v. 86, n. 4, p. 8, 2012.
dc.identifier.doi10.1103/PhysRevA.86.042326
dc.identifier.fileWOS000309996900003.pdf
dc.identifier.issn1050-2947
dc.identifier.lattes8884890472193474
dc.identifier.orcid0000-0003-3297-905X
dc.identifier.urihttp://hdl.handle.net/11449/42467
dc.identifier.wosWOS:000309996900003
dc.language.isoeng
dc.publisherAmer Physical Soc
dc.relation.ispartofPhysical Review A
dc.relation.ispartofsjr1,288
dc.rights.accessRightsAcesso aberto
dc.sourceWeb of Science
dc.titleExact dynamics of single-qubit-gate fidelities under the measurement-based quantum computation schemeen
dc.typeArtigo
dcterms.licensehttp://publish.aps.org/authors/transfer-of-copyright-agreement
dcterms.rightsHolderAmer Physical Soc
dspace.entity.typePublication
unesp.author.lattes8884890472193474[2]
unesp.author.orcid0000-0003-3297-905X[2]
unesp.campusUniversidade Estadual Paulista (UNESP), Faculdade de Ciências, Baurupt
unesp.departmentFísica - FCpt

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