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dc.contributor.authorGiannoulis, J.en
dc.contributor.authorMielke, A.en
dc.date.accessioned2015-11-24T17:21:35Z-
dc.date.available2015-11-24T17:21:35Z-
dc.identifier.issn0951-7715-
dc.identifier.urihttps://olympias.lib.uoi.gr/jspui/handle/123456789/12484-
dc.rightsDefault Licence-
dc.subjectforced lattice-vibrationsen
dc.subjectsolitary wavesen
dc.subjecttraveling-wavesen
dc.subjectfpu latticesen
dc.subjectsystemsen
dc.subjectexistenceen
dc.subjectmodulationen
dc.titleThe nonlinear Schrodinger equation as a macroscopic limit for an oscillator chain with cubic nonlinearitiesen
heal.typejournalArticle-
heal.type.enJournal articleen
heal.type.elΆρθρο Περιοδικούel
heal.identifier.primaryDoi 10.1088/0951-7715/17/2/011-
heal.identifier.secondary<Go to ISI>://000220523400012-
heal.identifier.secondaryhttp://iopscience.iop.org/0951-7715/17/2/011/pdf/0951-7715_17_2_011.pdf-
heal.languageen-
heal.accesscampus-
heal.recordProviderΠανεπιστήμιο Ιωαννίνων. Σχολή Θετικών Επιστημών. Τμήμα Μαθηματικώνel
heal.publicationDate2004-
heal.abstractWe consider the nonlinear model of an infinite oscillator chain embedded in a background field. We start from an appropriate modulation ansatz of the space-time periodic solutions to the linearized (microscopic) model and derive formally the associated (macroscopic) modulation equation, which turns out-to be the nonlinear Schrodinger equation. Then we justify this necessary condition rigorously for the case of nonlinearities with cubic leading terms; i.e. we show that solutions that have the form of the assumed ansatz for t = 0 preserve this form over time-intervals with a positive macroscopic length. Finally, we transfer this result to the analogous case of a finite but large periodic chain and illustrate it by a numerical example.en
heal.publisherInstitute of Physicsen
heal.journalNameNonlinearityen
heal.journalTypepeer reviewed-
heal.fullTextAvailabilityTRUE-
Appears in Collections:Άρθρα σε επιστημονικά περιοδικά ( Ανοικτά). ΜΑΘ

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