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hal.structure.identifierInstitut Laue-Langevin [ILL]
dc.contributor.authorCHATTERJI, Tapan
hal.structure.identifierLaboratory for Neutron Scattering and Imaging [Paul Scherrer Institute] [LNS]
dc.contributor.authorHENGGELER, Wolfgang
hal.structure.identifierInstitut de Chimie de la Matière Condensée de Bordeaux [ICMCB]
dc.contributor.authorDELMAS, Claude
dc.date.issued2005
dc.identifier.issn0953-8984
dc.description.abstractEnWe have investigated S = 1/2 triangular lattice Li0.98Ni1.02O2 by a zero-field (ZF) and longitudinal-field (LF) μSR technique. The muon signals from Li0.98Ni1.02O2 could be fitted by a stretched exponential function at low temperatures. At about 30 K the power k of the stretched exponential function becomes about k = 2 for the ZF signal, i.e. the relaxation becomes practically a Gaussian. For the LF-μSR signals the exponent k tends to become 1 above T = 30 K, i.e. the signal becomes exponential. The relaxation rate λ becomes very high at temperature below T = 10 K for the ZF data whereas λ corresponding to LF data shows a maximum at T ~ 10 K. The LF relaxation rate remains finite (0.4 µs-1) at the lowest temperature (T ~ 2 K) investigated. This indicates that even at very low temperature muon spin becomes depolarized because muons pick up low energy excitations from the spin dynamics. We get a rough estimate of the magnetic exchange interaction of about 1 meV from the peak in the spin–spin correlation function.
dc.language.isoen
dc.publisherIOP Publishing
dc.subject.enData acquisition
dc.subject.enDegrees of freedom (mechanics)
dc.subject.enLithium compounds
dc.subject.enLithium niobate
dc.subject.enMagnetic susceptibility
dc.subject.enTransition metals
dc.subject.enHeisenberg model
dc.subject.enLongitudinal-field (LF)
dc.subject.enTriangular lattice
dc.subject.enZero-field (ZF)
dc.subject.enCrystal lattices
dc.title.enMuon spin rotation investigation of the S = 1/2 triangular lattice LiNiO2
dc.typeArticle de revue
dc.identifier.doi10.1088/0953-8984/17/8/013
dc.subject.halChimie/Matériaux
bordeaux.journalJournal of Physics: Condensed Matter
bordeaux.pagep. 1341–1350
bordeaux.volumevol. 17, n° 8
bordeaux.peerReviewedoui
hal.identifierhal-00022426
hal.version1
hal.popularnon
hal.audienceNon spécifiée
hal.origin.linkhttps://hal.archives-ouvertes.fr//hal-00022426v1
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