Transiting exoplanets from the CoRoT space mission VIII. CoRoT-7b: the first super-Earth with measured radius


Autoria(s): LEGER, A.; ROUAN, D.; SCHNEIDER, J.; BARGE, P.; FRIDLUND, M.; SAMUEL, B.; OLLIVIER, M.; GUENTHER, E.; DELEUIL, M.; DEEG, H. J.; AUVERGNE, M.; ALONSO, R.; AIGRAIN, S.; ALAPINI, A.; ALMENARA, J. M.; BAGLIN, A.; BARBIERI, M.; BRUNTT, H.; BORDE, P.; BOUCHY, F.; CABRERA, J.; CATALA, C.; CARONE, L.; CARPANO, S.; CSIZMADIA, Sz.; DVORAK, R.; ERIKSON, A.; FERRAZ-MELLO, S.; FOING, B.; FRESSIN, F.; GANDOLFI, D.; GILLON, M.; GONDOIN, Ph.; GRASSET, O.; GUILLOT, T.; HATZES, A.; HEBRARD, G.; JORDA, L.; LAMMER, H.; LLEBARIA, A.; LOEILLET, B.; MAYOR, M.; MAZEH, T.; MOUTOU, C.; PAETZOLD, M.; PONT, F.; QUELOZ, D.; RAUER, H.; RENNER, S.; SAMADI, R.; SHPORER, A.; SOTIN, Ch.; TINGLEY, B.; WUCHTERL, G.; ADDA, M.; AGOGU, P.; APPOURCHAUX, T.; BALLANS, H.; BARON, P.; BEAUFORT, T.; BELLENGER, R.; BERLIN, R.; BERNARDI, P.; BLOUIN, D.; BAUDIN, F.; BODIN, P.; BOISNARD, L.; BOIT, L.; BONNEAU, F.; BORZEIX, S.; BRIET, R.; BUEY, J. -T.; BUTLER, B.; CAILLEAU, D.; CAUTAIN, R.; CHABAUD, P. -Y.; CHAINTREUIL, S.; CHIAVASSA, F.; COSTES, V.; PARRHO, V. Cuna; FIALHO, F. De Oliveira; DECAUDIN, M.; DEFISE, J. -M.; DJALAL, S.; EPSTEIN, G.; EXIL, G. -E.; FAURE, C.; FENOUILLET, T.; GABORIAUD, A.; GALLIC, A.; GAMET, P.; GAVALDA, P.; GROLLEAU, E.; GRUNEISEN, R.; GUEGUEN, L.; GUIS, V.; GUIVARC'H, V.; GUTERMAN, P.; HALLOUARD, D.; HASIBA, J.; HEURIPEAU, F.; HUNTZINGER, G.; HUSTAIX, H.; IMAD, C.; IMBERT, C.; JOHLANDER, B.; JOURET, M.; JOURNOUD, P.; KARIOTY, F.; KERJEAN, L.; LAFAILLE, V.; LAFOND, L.; LAM-TRONG, T.; LANDIECH, P.; LAPEYRERE, V.; LARQUE, T.; LAUDET, P.; LAUTIER, N.; LECANN, H.; LEFEVRE, L.; LERUYET, B.; LEVACHER, P.; MAGNAN, A.; MAZY, E.; MERTENS, F.; MESNAGER, J. -M.; MEUNIER, J. -C.; MICHEL, J. -P.; MONJOIN, W.; NAUDET, D.; NGUYEN-KIM, K.; ORCESI, J. -L.; OTTACHER, H.; PEREZ, R.; PETER, G.; PLASSON, P.; PLESSERIA, J. -Y.; PONTET, B.; PRADINES, A.; QUENTIN, C.; REYNAUD, J. -L.; ROLLAND, G.; ROLLENHAGEN, F.; ROMAGNAN, R.; RUSS, N.; SCHMIDT, R.; SCHWARTZ, N.; SEBBAG, I.; SEDES, G.; SMIT, H.; STELLER, M. B.; SUNTER, W.; SURACE, C.; TELLO, M.; TIPHENE, D.; TOULOUSE, P.; ULMER, B.; VANDERMARCQ, O.; VERGNAULT, E.; VUILLEMIN, A.; ZANATTA, P.
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

18/04/2012

18/04/2012

2009

Resumo

Aims. We report the discovery of very shallow (Delta F/F approximate to 3.4 x 10(-4)), periodic dips in the light curve of an active V = 11.7 G9V star observed by the CoRoT satellite, which we interpret as caused by a transiting companion. We describe the 3-colour CoRoT data and complementary ground-based observations that support the planetary nature of the companion. Methods. We used CoRoT colours information, good angular resolution ground-based photometric observations in- and out- of transit, adaptive optics imaging, near-infrared spectroscopy, and preliminary results from radial velocity measurements, to test the diluted eclipsing binary scenarios. The parameters of the host star were derived from optical spectra, which were then combined with the CoRoT light curve to derive parameters of the companion. Results. We examined all conceivable cases of false positives carefully, and all the tests support the planetary hypothesis. Blends with separation >0.40 '' or triple systems are almost excluded with a 8 x 10(-4) risk left. We conclude that, inasmuch we have been exhaustive, we have discovered a planetary companion, named CoRoT-7b, for which we derive a period of 0.853 59 +/- 3 x 10(-5) day and a radius of R(p) = 1.68 +/- 0.09 R(Earth). Analysis of preliminary radial velocity data yields an upper limit of 21 M(Earth) for the companion mass, supporting the finding. Conclusions. CoRoT-7b is very likely the first Super-Earth with a measured radius. This object illustrates what will probably become a common situation with missions such as Kepler, namely the need to establish the planetary origin of transits in the absence of a firm radial velocity detection and mass measurement. The composition of CoRoT-7b remains loosely constrained without a precise mass. A very high surface temperature on its irradiated face, approximate to 1800-2600 K at the substellar point, and a very low one, approximate to 50 K, on its dark face assuming no atmosphere, have been derived.

Spanish Ministerio de Educacion y Ciencia[ESP2004-03855-C03-03]

Spanish Ministerio de Educacion y Ciencia[ESP2007-65480-C02-02]

Deutsches Zentrum fur Luft- und Raumfahrt, DLR[50OW0204]

Deutsches Zentrum fur Luft- und Raumfahrt, DLR[50OW0603]

Deutsches Zentrum fur Luft- und Raumfahrt, DLR[50QP07011]

[CNES-COROT-070879]

Identificador

ASTRONOMY & ASTROPHYSICS, v.506, n.1, p.287-302, 2009

0004-6361

http://producao.usp.br/handle/BDPI/15694

10.1051/0004-6361/200911933

http://dx.doi.org/10.1051/0004-6361/200911933

Idioma(s)

eng

Publicador

EDP SCIENCES S A

Relação

Astronomy & Astrophysics

Direitos

closedAccess

Copyright EDP SCIENCES S A

Palavras-Chave #techniques: photometric #techniques: spectroscopic #planetary systems #techniques: high angular resolution #techniques: radial velocities #IN EXTRASOLAR PLANETS #SOLAR PLANETS #INFORMATION-SYSTEM #OCEAN-PLANETS #HARPS SEARCH #STARS #STELLAR #PARAMETERS #EVOLUTION #COROT-EXO-4B #Astronomy & Astrophysics
Tipo

article

original article

publishedVersion