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Competition between polar and nonpolar lattice distortions in oxide quantum wells: new critical thickness at polar interfaces

dc.contributor.authorGázquez Alabart, J.
dc.contributor.authorStengel, M.
dc.contributor.authorMishra, R.
dc.contributor.authorScigaj, M.
dc.contributor.authorVarela Del Arco, María
dc.contributor.authorRoldan, M. A.
dc.contributor.authorFontcuberta, J.
dc.contributor.authorSánchez, F.
dc.contributor.authorHerranz, G.
dc.date.accessioned2023-06-17T22:12:55Z
dc.date.available2023-06-17T22:12:55Z
dc.date.issued2017-09-07
dc.description© 2017 American Physical Society. This work was supported by the Spanish MA2014- 56063-C2-1-RT, Severo Ochoa SEV-2015-0496 grant, the RyC-2012–11709 contract of J. G., and the Generalitat de Catalunya (2014 SGR 734) project. Electron microscopy observations at ORNL were supported by the U.S. Department of Energy (DOE), Basic Energy Sciences (BES), Materials Sciences and Engineering Division. M. S. acknowledges the support of MINECO through Grants No. MAT2016-77100-C2-2-P and No. FIS2013- 48668-C2-2-P and of Generalitat de Catalunya (Grant No. 2014 SGR301). Calculations were performed at the Supercomputing Center of Galicia (CESGA). The authors are also grateful to Nico Dix for his collaboration in the growth of the films. Research at UCM sponsored by Fundación BBVA and Spanish MINECO MAT2015- 66888-C3-3-R.
dc.description.abstractTwo basic lattice distortions permeate the structural phase diagram of oxide perovskites: antiferrodistortive (AFD) rotations and tilts of the oxygen octahedral network and polar ferroelectric modes. With some notable exceptions, these two order parameters rarely coexist in a bulk crystal, and understanding their competition is a lively area of active research. Here we demonstrate, by using the LaAlO₃/SrTiO₃ system as a test case, that quantum confinement can be a viable tool to shift the balance between AFD and polar modes and selectively stabilize one of the two phases. By combining scanning transmission electron microscopy (STEM) and first-principles-based models, we find a crossover between a bulklike LaAlO₃ structure where AFD rotations prevail, to a strongly polar state with no AFD tilts at a thickness of approximately three unit cells; therefore, in addition to the celebrated electronic reconstruction, our work unveils a second critical thickness, related not to the electronic properties but to the structural ones. We discuss the implications of these findings, both for the specifics of the LaAlO₃/SrTiO₃ system and for the general quest towards nanoscale control of material properties.
dc.description.departmentDepto. de Física de Materiales
dc.description.facultyFac. de Ciencias Físicas
dc.description.refereedTRUE
dc.description.sponsorshipMinisterio de Economía y Competitividad (MINECO)
dc.description.sponsorshipSevero Ochoa
dc.description.sponsorshipGeneralitat de Catalunya
dc.description.sponsorshipU.S. Department of Energy (DOE)
dc.description.sponsorshipFundación BBVA
dc.description.statuspub
dc.eprint.idhttps://eprints.ucm.es/id/eprint/45352
dc.identifier.doi10.1103/PhysRevLett.119.106102
dc.identifier.issn0031-9007
dc.identifier.officialurlhttp://dx.doi.org/10.1103/PhysRevLett.119.106102
dc.identifier.relatedurlhttps://journals.aps.org
dc.identifier.urihttps://hdl.handle.net/20.500.14352/18226
dc.issue.number10
dc.journal.titlePhysical review letters
dc.language.isoeng
dc.publisherAmerican Physical Society
dc.relation.projectIDMAT2014- 56063-C2-1-R
dc.relation.projectIDMAT2016-77100-C2-2-P
dc.relation.projectIDFIS2013- 48668-C2-2-P
dc.relation.projectIDMAT2015- 66888-C3-3-R
dc.relation.projectIDSEV-2015-0496
dc.relation.projectID2014 SGR 734
dc.relation.projectIDRyC-2012–11709
dc.relation.projectID2014 SGR 301
dc.rights.accessRightsopen access
dc.subject.cdu538.9
dc.subject.keywordElectron-gas
dc.subject.keywordFerroelectricity
dc.subject.keywordPhononics
dc.subject.keywordOrigin
dc.subject.keywordHeterostructures
dc.subject.keywordPerovskites
dc.subject.keywordTransitions
dc.subject.keywordMobility
dc.subject.ucmFísica de materiales
dc.subject.ucmFísica del estado sólido
dc.subject.unesco2211 Física del Estado Sólido
dc.titleCompetition between polar and nonpolar lattice distortions in oxide quantum wells: new critical thickness at polar interfaces
dc.typejournal article
dc.volume.number119
dspace.entity.typePublication
relation.isAuthorOfPublication63e453a5-31af-4eeb-9a5f-21c2edbbb733
relation.isAuthorOfPublication.latestForDiscovery63e453a5-31af-4eeb-9a5f-21c2edbbb733

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