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dc.creatorTorchinsky, DH
dc.creatorChu, H
dc.creatorZhao, L
dc.creatorPerkins, NB
dc.creatorSizyuk, Y
dc.creatorQi, T
dc.creatorCao, G
dc.creatorHsieh, D
dc.date.accessioned2021-02-03T18:06:01Z
dc.date.available2021-02-03T18:06:01Z
dc.date.issued2015-03-05
dc.identifier.issn0031-9007
dc.identifier.issn1079-7114
dc.identifier.doihttp://dx.doi.org/10.34944/dspace/5799
dc.identifier.otherCD1QT (isidoc)
dc.identifier.other25793834 (pubmed)
dc.identifier.urihttp://hdl.handle.net/20.500.12613/5817
dc.description.abstract© 2015 American Physical Society. We report a global structural distortion in Sr2IrO4 using spatially resolved optical second and third harmonic generation rotational anisotropy measurements. A symmetry lowering from an I41/acd to I41/a space group is observed both above and below the Néel temperature that arises from a staggered tetragonal distortion of the oxygen octahedra. By studying an effective superexchange Hamiltonian that accounts for this lowered symmetry, we find that perfect locking between the octahedral rotation and magnetic moment canting angles can persist even in the presence of large noncubic local distortions. Our results explain the origin of the forbidden Bragg peaks recently observed in neutron diffraction experiments and reconcile the observations of strong tetragonal distortion and perfect magnetoelastic locking in Sr2IrO4.
dc.format.extent096404-
dc.language.isoen
dc.relation.haspartPhysical Review Letters
dc.relation.isreferencedbyAmerican Physical Society (APS)
dc.subjectcond-mat.str-el
dc.subjectcond-mat.str-el
dc.titleStructural distortion-induced magnetoelastic locking in sr2iro4 revealed through nonlinear optical harmonic generation
dc.typeArticle
dc.type.genreJournal Article
dc.relation.doi10.1103/PhysRevLett.114.096404
dc.ada.noteFor Americans with Disabilities Act (ADA) accommodation, including help with reading this content, please contact scholarshare@temple.edu
dc.creator.orcidTorchinsky, Darius H|0000-0001-6497-2237
dc.date.updated2021-02-03T18:05:57Z
refterms.dateFOA2021-02-03T18:06:01Z


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