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dc.contributor.authorJames Sifuna
dc.contributor.authorGarcía Fernández, Pablo (físico) 
dc.contributor.authorManyali, George S.
dc.contributor.authorAmolo, George
dc.contributor.authorJunquera Quintana, Francisco Javier 
dc.contributor.otherUniversidad de Cantabriaes_ES
dc.date.accessioned2021-02-24T15:24:01Z
dc.date.available2021-02-24T15:24:01Z
dc.date.issued2020
dc.identifier.issn1098-0121
dc.identifier.issn1550-235X
dc.identifier.issn2469-9950
dc.identifier.issn2469-9969
dc.identifier.otherFIS2015-64886-C5-2-Pes_ES
dc.identifier.otherPGC2018-096955-B-C41es_ES
dc.identifier.urihttp://hdl.handle.net/10902/20800
dc.description.abstractWe study from first principles the structural and electronic properties of head-to-head (HH) and tail-to-tail (TT) 180º domain walls in isolated free-standing PbTiO3 slabs. For sufficiently thick domains (n = 16 unit cells of PbTiO3), a transfer of charge from the free surfaces to the domain walls to form localized electron (in the HH) and hole (in the TT) gases in order to screen the bound polarization charges is observed. The electrostatic driving force behind this electronic reconstruction is clearly visible from the perfect match between the smoothed free charge densities and the bound charge distribution, computed from a finite difference of the polarization profile obtained after the relaxation of the lattice degrees of freedom. The domain wall widths, of around six unit cells, are larger than in the conventional 180? neutral configurations. Since no oxygen vacancies, defects, or dopant atoms are introduced in our simulations, all the previous physical quantities are the intrinsic limits of the system. Our results support the existence of an extra source of charge at the domain walls to explain the enhancement of the conductivity observed in some domains walls of prototypical, insulating in bulk, perovskite oxides.es_ES
dc.description.sponsorshipJ.S. thanks the University of Cantabria for the scholarship funded by the Vice-rectorate for Internationalisation and the Theoretical Condensed Matter Group. J.J. and P.G.-F. acknowledge financial support from the Spanish Ministry of Economy and Competitiveness through the MINECO Grant No. FIS2015-64886-C5-2-P, and the Spanish Ministry of Science, Innovation and Universities through Grant No. PGC2018-096955-B-C41.es_ES
dc.format.extent7 p.es_ES
dc.language.isoenges_ES
dc.publisherAmerican Physical Societyes_ES
dc.rights© American Physical Societyes_ES
dc.sourcePHYSICAL REVIEW B 101, 174114 (2020)es_ES
dc.titleFirst-principles study of two-dimensional electron and hole gases at the head-to-head and tail-to-tail 180º domain walls in PbTiO3 ferroelectric thin filmses_ES
dc.typeinfo:eu-repo/semantics/articlees_ES
dc.relation.publisherVersionhttps://doi.org/10.1103/PhysRevB.101.174114es_ES
dc.rights.accessRightsopenAccesses_ES
dc.identifier.DOI10.1103/PhysRevB.101.174114
dc.type.versionpublishedVersiones_ES


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