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dc.contributor.authorCarneiro, Saulo-
dc.contributor.authorOliveira Neto, M. de-
dc.contributor.authorMaia, L.A.-
dc.creatorCarneiro, Saulo-
dc.creatorOliveira Neto, M. de-
dc.creatorMaia, L.A.-
dc.date.accessioned2014-01-20T14:27:48Z-
dc.date.issued2004-
dc.identifier.issn0960-0779-
dc.identifier.urihttp://repositorio.ufba.br/ri/handle/ri/14387-
dc.descriptionTexto completo: acesso restrito. p. 21–28pt_BR
dc.description.abstractIn the present work we show that planetary mean distances can be calculated with the help of a Schrödinger-type diffusion equation. The obtained results are shown to agree with the observed orbits of all the planets and of the asteroid belt in the solar system, with only three empty states. Furthermore, the equation solutions predict a fundamental orbit at 0.05 AU from solar-type stars, a result confirmed by recent discoveries. In contrast to other similar approaches previously presented in the literature, we take into account the flatness of the solar system, by considering the flat solutions of the Schrödinger-type equation. The model has just one input parameter, given by the mean distance of Mercury.pt_BR
dc.language.isoenpt_BR
dc.rightsAcesso Abertopt_BR
dc.sourcehttp://dx.doi.org.ez10.periodicos.capes.gov.br/10.1016/j.chaos.2003.09.046pt_BR
dc.subjectSchrodinger-typept_BR
dc.subjectsolar-typept_BR
dc.titleAn alternative theoretical approach to describe planetary systems through a Schrödinger-type diffusion equationpt_BR
dc.title.alternativeChaos, Solitons and Fractalspt_BR
dc.typeArtigo de Periódicopt_BR
dc.identifier.numberv. 21, n. 1pt_BR
dc.embargo.liftdate10000-01-01-
Aparece nas coleções:Artigo Publicado em Periódico (FIS)

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