dc.creatorKopelevich Y.
dc.creatorRaquet B.
dc.creatorGoiran M.
dc.creatorEscoffier W.
dc.creatorDa Silva R.R.
dc.creatorMedina Pantoja J.C.
dc.creatorLuk'yanchuk I.A.
dc.creatorSinchenko A.
dc.creatorMonceau P.
dc.date2009
dc.date2015-06-26T13:34:04Z
dc.date2015-11-26T15:33:07Z
dc.date2015-06-26T13:34:04Z
dc.date2015-11-26T15:33:07Z
dc.date.accessioned2018-03-28T22:41:40Z
dc.date.available2018-03-28T22:41:40Z
dc.identifier
dc.identifierPhysical Review Letters. , v. 103, n. 11, p. - , 2009.
dc.identifier319007
dc.identifier10.1103/PhysRevLett.103.116802
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-70249142135&partnerID=40&md5=7ff8115ae56cba0a258cfec97d8dd5b8
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/91887
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/91887
dc.identifier2-s2.0-70249142135
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1262668
dc.descriptionMeasurements of basal plane longitudinal ρb(B) and Hall ρH(B) resistivities were performed on highly oriented pyrolytic graphite samples in a pulsed magnetic field up to B=50T applied perpendicular to graphene planes, and temperatures 1.5K≤T≤4.2K. At B>30T and for all studied samples, we observed a sign change in ρH(B) from electron- to holelike. For our best quality sample, the measurements revealed the enhancement in ρb(B) for B>34T (T=1.8K), presumably associated with the field-driven charge density wave or Wigner crystallization transition. In addition, well-defined plateaus in ρH(B) were detected in the ultraquantum limit revealing possible signatures of the fractional quantum Hall effect in graphite. © 2009 The American Physical Society.
dc.description103
dc.description11
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dc.languageen
dc.publisher
dc.relationPhysical Review Letters
dc.rightsaberto
dc.sourceScopus
dc.titleSearching For The Fractional Quantum Hall Effect In Graphite
dc.typeArtículos de revistas


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