Publication:

Competition between spin ordering and superconductivity near the pseudogap boundary in La2−xSrxCuO4: Insights from NMR

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Date

Date
2022
Journal Article
Published version
cris.lastimport.scopus2025-06-16T03:32:37Z
cris.lastimport.wos2025-07-26T01:49:29Z
dc.contributor.institutionUniversity of Zurich
dc.date.accessioned2022-09-05T15:00:03Z
dc.date.available2022-09-05T15:00:03Z
dc.date.issued2022-08-31
dc.description.abstract

When superconductivity is suppressed by high magnetic fields in La2−xSrxCuO4, striped antiferromagnetic (AFM) order becomes the magnetic ground state of the entire pseudogap regime, up to its end at the doping p∗ [Frachet, Vinograd et al., Nat. Phys. 16, 1064 (2020)]. Glass-like freezing of this state is detected in 139La NMR measurements of the spin-lattice relaxation rate T−11. Here, we present a quantitative analysis of T−11 data in the hole-doping range p=x=0.12−0.171, based on the Bloembergen-Purcell-Pound (BPP) theory, modified to include statistical distribution of parameters arising from strong spatial inhomogeneity. We observe spin fluctuations to slow down at temperatures T near the onset of static charge order and, overall, the effect of the field B may be seen as equivalent to strengthening stripe order by approaching p=0.12 doping. In details, however, our analysis reveals significant departure from usual field-induced magnetic transitions. The continuous growth of the amplitude of the fluctuating moment with increasing B suggests a nearly-critical state in the B→0 limit, with very weak quasistatic moments possibly confined in small areas like vortex cores. Further, the nucleation of spin order in the vortex cores is shown to account quantitatively for both the value and the p dependence of a field scale characterizing bulk spin freezing. The correlation time of the fluctuating moment appears to depend exponentially on B/T (over the investigated range). This explains the timescale dependence of various experimental manifestations, including why, for transport measurements, the AFM moments may be considered static over a considerable range of B and T. These results make the high-field magnetic ground state up to p∗ an integral part of the discussion on putative quantum criticality.

dc.identifier.doi10.1103/physrevb.106.054522
dc.identifier.issn2469-9950
dc.identifier.scopus2-s2.0-85137660951
dc.identifier.urihttps://www.zora.uzh.ch/handle/20.500.14742/197267
dc.identifier.wos000861332900004
dc.language.isoeng
dc.subject.ddc530 Physics
dc.title

Competition between spin ordering and superconductivity near the pseudogap boundary in La2−xSrxCuO4: Insights from NMR

dc.typearticle
dcterms.accessRightsinfo:eu-repo/semantics/openAccess
dcterms.bibliographicCitation.journaltitlePhysical Review B
dcterms.bibliographicCitation.number5
dcterms.bibliographicCitation.originalpublishernameAmerican Physical Society
dcterms.bibliographicCitation.pagestart054522
dcterms.bibliographicCitation.volume106
dspace.entity.typePublicationen
uzh.contributor.affiliationUniversite Grenoble Alpes, Karlsruhe Institute of Technology
uzh.contributor.affiliationUniversite Grenoble Alpes
uzh.contributor.affiliationUniversite Grenoble Alpes
uzh.contributor.affiliationUniversite Grenoble Alpes
uzh.contributor.affiliationFlorida State University
uzh.contributor.affiliationFlorida State University
uzh.contributor.affiliationHokkaido University
uzh.contributor.affiliationMuroran Institute of Technology
uzh.contributor.affiliationHokkaido University
uzh.contributor.affiliationCentral Research Institute of Electric Power Industry
uzh.contributor.affiliationCentral Research Institute of Electric Power Industry
uzh.contributor.affiliationUniversity of Zurich
uzh.contributor.affiliationUniversity of Zurich
uzh.contributor.affiliationUniversite Grenoble Alpes
uzh.contributor.authorVinograd, I
uzh.contributor.authorZhou, R
uzh.contributor.authorMayaffre, H
uzh.contributor.authorKrämer, S
uzh.contributor.authorRamakrishna, S K
uzh.contributor.authorReyes, A P
uzh.contributor.authorKurosawa, T
uzh.contributor.authorMomono, N
uzh.contributor.authorOda, M
uzh.contributor.authorKomiya, S
uzh.contributor.authorOno, S
uzh.contributor.authorHorio, M
uzh.contributor.authorChang, J
uzh.contributor.authorJulien, M-H
uzh.contributor.correspondenceYes
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.document.availabilitypublished_version
uzh.eprint.datestamp2022-09-05 15:00:03
uzh.eprint.lastmod2025-07-26 01:56:39
uzh.eprint.statusChange2022-09-05 15:00:03
uzh.funder.nameSchweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
uzh.harvester.ethYes
uzh.harvester.nbNo
uzh.identifier.doi10.5167/uzh-220376
uzh.jdb.eprintsId38524
uzh.oastatus.unpaywallgreen
uzh.oastatus.zoraGreen
uzh.publication.citationVinograd, I., Zhou, R., Mayaffre, H., Krämer, S., Ramakrishna, S. K., Reyes, A. P., Kurosawa, T., Momono, N., Oda, M., Komiya, S., Ono, S., Horio, M., Chang, J., & Julien, M.-H. (2022). Competition between spin ordering and superconductivity near the pseudogap boundary in La2−xSrxCuO4: Insights from NMR. Physical Review B, 106, 054522. https://doi.org/10.1103/physrevb.106.054522
uzh.publication.originalworkoriginal
uzh.publication.publishedStatusfinal
uzh.scopus.impact7
uzh.scopus.subjectsElectronic, Optical and Magnetic Materials
uzh.scopus.subjectsCondensed Matter Physics
uzh.workflow.doajuzh.workflow.doaj.false
uzh.workflow.eprintid220376
uzh.workflow.fulltextStatuspublic
uzh.workflow.revisions41
uzh.workflow.rightsCheckkeininfo
uzh.workflow.sourceCrossref:10.1103/physrevb.106.054522
uzh.workflow.statusarchive
uzh.wos.impact7
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