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dc.contributor.authorNaumenko, O.V.
dc.contributor.authorLeshchishina, O.
dc.contributor.authorShirin, S.
dc.contributor.authorJenouvrier, A.
dc.contributor.authorFally, S.
dc.contributor.authorVandaele, A.C.
dc.contributor.authorBertseva, E.
dc.contributor.authorCampargue, A.
dc.date2006
dc.date.accessioned2016-11-22T12:47:49Z
dc.date.available2016-11-22T12:47:49Z
dc.identifier.urihttps://orfeo.belnet.be/handle/internal/4510
dc.descriptionThe absorption spectrum of dideuterated water, D2O, has been recorded between 8800 and 9520 cm-1 by intracavity laser absorption spectroscopy (ICLAS) based on a vertical external cavity system emitting laser (VeCSEL) and by high sensitivity Fourier Transform spectroscopy. The combined analysis of the spectra has allowed attributing 1223 transitions to the D2O species. The spectrum assignment was performed on the basis of the recent results of variational calculations based on an optimized potential energy surface of D2O. A set of 687 energy levels was derived from transitions assigned to eight upper vibrational states, 577 of them being reported for the first time. A detailed line list has been generated. The line intensities were retrieved mainly from the FTS spectrum and the absolute integrated intensities of the 2v1 + v2 + v3 and the v2 + 3v3 bands dominating the spectrum have been determined.
dc.languageeng
dc.titleCombined analysis of the high sensitivity Fourier transform and ICLAS-VeCSEL absorption spectra of D2O between 8800 and 9520 cm-1
dc.typeArticle
dc.subject.frascatiEarth and related Environmental sciences
dc.audienceScientific
dc.subject.freeAbsorption spectroscopy
dc.subject.freeBand structure
dc.subject.freeElectron energy levels
dc.subject.freeFourier transforms
dc.subject.freePotential energy
dc.subject.freeDeuterated water
dc.subject.freeFourier transform spectroscopy
dc.subject.freeIntracavity laser absorption spectroscopy
dc.subject.freeRovibrational energy levels
dc.subject.freeHeavy water
dc.source.titleJournal of Molecular Spectroscopy
dc.source.volume238
dc.source.issue1
dc.source.page79-90
Orfeo.peerreviewedYes
dc.identifier.doi10.1016/j.jms.2006.04.015
dc.identifier.scopus2-s2.0-33745469758


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