dc.creatorLavarda F.C.
dc.creatorGalvao D.S.
dc.creatorLaks B.
dc.date1997
dc.date2015-06-30T14:48:49Z
dc.date2015-11-26T14:33:10Z
dc.date2015-06-30T14:48:49Z
dc.date2015-11-26T14:33:10Z
dc.date.accessioned2018-03-28T21:36:34Z
dc.date.available2018-03-28T21:36:34Z
dc.identifier
dc.identifierSynthetic Metals. , v. 85, n. 01/03/15, p. 1083 - 1084, 1997.
dc.identifier3796779
dc.identifier
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-0031069576&partnerID=40&md5=33fad4180735b4293c3a21528a2f0b1d
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/100132
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/100132
dc.identifier2-s2.0-0031069576
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1247795
dc.descriptionIt's believed that the simple Su-Schrieffer-Heeger Hamiltonian can not predict the insulator to metal transition of transpolyacetylene (t-PA). The soliton lattice configuration at a doping level y=6% still has a semiconductor gap. Disordered distributions of solitons close the gap, but the electronic states around the Fermi energy are localized. However, within the same framework, it is possible to show that a cluster of solitons can produce dramatic changes in the electronic structure, allowing an insulator-to-metal transition.
dc.description85
dc.description01/03/15
dc.description1083
dc.description1084
dc.descriptionSu, W.P., Schrieffer, J.R., Heeger, A.J., (1980) Phys. Rev., B22, p. 5754
dc.descriptionRice, M.J., Mele, E.J., (1981) Phys. Rev., B23, p. 5397
dc.descriptionSu, W.P., (1983) Sol. St. Comm., 47, p. 947
dc.descriptionConwell, E.M., Mizes, H.A., (1989) S. Jeyadev, Phys. Rev., B40, p. 1630
dc.descriptionStafström, S., (1991) Phys. Rev., B43, p. 9158
dc.descriptionCohen, R.J., Glick, A.J., (1992) Phys. Rev. B, 45, p. 3107
dc.languageen
dc.publisher
dc.relationSynthetic Metals
dc.rightsfechado
dc.sourceScopus
dc.titleInsulator-to-metal Transition Driven By Clustering Of Solitons In Polyacetylene
dc.typeArtículos de revistas


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