Please use this identifier to cite or link to this item: https://hdl.handle.net/10216/96421
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dc.creatorEric Michel
dc.creatorAnnie Baglin
dc.creatorMichel Auvergne
dc.creatorClaude Catala
dc.creatorReza Samadi
dc.creatorFrederic Baudin
dc.creatorThierry Appourchaux
dc.creatorCaroline Barban
dc.creatorWerner W Weiss
dc.creatorGabrielle Berthomieu
dc.creatorPatrick Boumier
dc.creatorMarc Antoine Dupret
dc.creatorRafael A Garcia
dc.creatorMalcolm Fridlund
dc.creatorRafael Garrido
dc.creatorMarie Jo Goupil
dc.creatorHans Kjeldsen
dc.creatorYveline Lebreton
dc.creatorBenoit Mosser
dc.creatorArlette Grotsch Noels
dc.creatorEduardo Janot Pacheco
dc.creatorJanine Provost
dc.creatorIan W Roxburgh
dc.creatorAnne Thoul
dc.creatorThierry Toutain
dc.creatorDidier Tiphene
dc.creatorSylvaine Turck Chieze
dc.creatorSylvie D Vauclair
dc.creatorGerard P Vauclair
dc.creatorConny Aerts
dc.creatorGeorges Alecian
dc.creatorJerome Ballot
dc.creatorStephane Charpinet
dc.creatorAnne Marie Hubert
dc.creatorFrancois Lignieres
dc.creatorPhilippe Mathias
dc.creatorMario J P F G Monteiro
dc.creatorCoralie Neiner
dc.creatorEnnio Poretti
dc.creatorJose Renan de Medeiros
dc.creatorIgnasi Ribas
dc.creatorMichel L Rieutord
dc.creatorTeodoro R Roca Cortes
dc.creatorKonstanze Zwintz
dc.date.accessioned2019-02-01T13:46:46Z-
dc.date.available2019-02-01T13:46:46Z-
dc.date.issued2008
dc.identifier.issn0036-8075
dc.identifier.othersigarra:49419
dc.identifier.urihttps://repositorio-aberto.up.pt/handle/10216/96421-
dc.descriptionOscillations of the Sun have been used to understand its interior structure. The extension of similar studies to more distant stars has raised many difficulties despite the strong efforts of the international community over the past decades. The CoRoT (Convection Rotation and Planetary Transits) satellite, launched in December 2006, has now measured oscillations and the stellar granulation signature in three main sequence stars that are noticeably hotter than the sun. The oscillation amplitudes are about 1.5 times as large as those in the Sun; the stellar granulation is up to three times as high. The stellar amplitudes are about 25% below the theoretic values, providing a measurement of the nonadiabaticity of the process ruling the oscillations in the outer layers of the stars.
dc.description.abstractOscillations of the Sun have been used to understand its interior structure. The extension of similar studies to more distant stars has raised many difficulties despite the strong efforts of the international community over the past decades. The CoRoT (Convection Rotation and Planetary Transits) satellite, launched in December 2006, has now measured oscillations and the stellar granulation signature in three main sequence stars that are noticeably hotter than the sun. The oscillation amplitudes are about 1.5 times as large as those in the Sun; the stellar granulation is up to three times as high. The stellar amplitudes are about 25% below the theoretic values, providing a measurement of the nonadiabaticity of the process ruling the oscillations in the outer layers of the stars.
dc.language.isoeng
dc.rightsrestrictedAccess
dc.subjectAstrofísica, Ciências Físicas, Astronomia
dc.subjectAstrophysics, Physical sciences, Astronomy
dc.titleCoRoT measures solar-like oscillations and granulation in stars hotter than the Sun
dc.typeArtigo em Revista Científica Internacional
dc.contributor.uportoFaculdade de Ciências
dc.identifier.doi10.1126/science.1163004
dc.identifier.authenticusP-003-VFK
Appears in Collections:FCUP - Artigo em Revista Científica Internacional

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