Search for rings and satellites around the exoplanet CoRoT-9b using Spitzer photometry

Using Spitzer photometry at 4.5 microns, we search for rings and satellites around the long period transiting planet CoRoT-9b. We observed two transits in 2010 and 2011. From their non-detection, we derive upper limits on the plausible physical characteristics of these objects in the planet environm...

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Autores principales: Lecavelier Des Etangs, A., Hébrard, G., Blandin, S., Cassier, J., Deeg, H.J., Bonomo, A.S., Bouchy, F., Désert, J.-M., Ehrenreich, D., Deleuil, M., Díaz, R.F., Moutou, C., Vidal-Madjar, A.
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_00046361_v603_n_p_LecavelierDesEtangs
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spelling todo:paper_00046361_v603_n_p_LecavelierDesEtangs2023-10-03T14:01:11Z Search for rings and satellites around the exoplanet CoRoT-9b using Spitzer photometry Lecavelier Des Etangs, A. Hébrard, G. Blandin, S. Cassier, J. Deeg, H.J. Bonomo, A.S. Bouchy, F. Désert, J.-M. Ehrenreich, D. Deleuil, M. Díaz, R.F. Moutou, C. Vidal-Madjar, A. Planetary systems Stars: individual: CoRoT-9 Techniques: photometric Photometry Silicates Earth radii Inclination angles Non-detection Physical characteristics Planetary system Stars: individual Techniques: photometric Upper limits Satellites Using Spitzer photometry at 4.5 microns, we search for rings and satellites around the long period transiting planet CoRoT-9b. We observed two transits in 2010 and 2011. From their non-detection, we derive upper limits on the plausible physical characteristics of these objects in the planet environment. We show that a satellite larger than about 2.5 Earth radii is excluded at 3σ for a wide range of elongations at the two epochs of observations. Combining the two observations, we conclude that rings are excluded for a wide variety of sizes and inclination. We find that for a ring extending up to the Roche limit, its inclination angle from the edge-on configuration as seen from the Earth must be lower than 13° in the case of silicate composition and lower than 3° in the case of material with water ice density. © ESO, 2017. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_00046361_v603_n_p_LecavelierDesEtangs
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Planetary systems
Stars: individual: CoRoT-9
Techniques: photometric
Photometry
Silicates
Earth radii
Inclination angles
Non-detection
Physical characteristics
Planetary system
Stars: individual
Techniques: photometric
Upper limits
Satellites
spellingShingle Planetary systems
Stars: individual: CoRoT-9
Techniques: photometric
Photometry
Silicates
Earth radii
Inclination angles
Non-detection
Physical characteristics
Planetary system
Stars: individual
Techniques: photometric
Upper limits
Satellites
Lecavelier Des Etangs, A.
Hébrard, G.
Blandin, S.
Cassier, J.
Deeg, H.J.
Bonomo, A.S.
Bouchy, F.
Désert, J.-M.
Ehrenreich, D.
Deleuil, M.
Díaz, R.F.
Moutou, C.
Vidal-Madjar, A.
Search for rings and satellites around the exoplanet CoRoT-9b using Spitzer photometry
topic_facet Planetary systems
Stars: individual: CoRoT-9
Techniques: photometric
Photometry
Silicates
Earth radii
Inclination angles
Non-detection
Physical characteristics
Planetary system
Stars: individual
Techniques: photometric
Upper limits
Satellites
description Using Spitzer photometry at 4.5 microns, we search for rings and satellites around the long period transiting planet CoRoT-9b. We observed two transits in 2010 and 2011. From their non-detection, we derive upper limits on the plausible physical characteristics of these objects in the planet environment. We show that a satellite larger than about 2.5 Earth radii is excluded at 3σ for a wide range of elongations at the two epochs of observations. Combining the two observations, we conclude that rings are excluded for a wide variety of sizes and inclination. We find that for a ring extending up to the Roche limit, its inclination angle from the edge-on configuration as seen from the Earth must be lower than 13° in the case of silicate composition and lower than 3° in the case of material with water ice density. © ESO, 2017.
format JOUR
author Lecavelier Des Etangs, A.
Hébrard, G.
Blandin, S.
Cassier, J.
Deeg, H.J.
Bonomo, A.S.
Bouchy, F.
Désert, J.-M.
Ehrenreich, D.
Deleuil, M.
Díaz, R.F.
Moutou, C.
Vidal-Madjar, A.
author_facet Lecavelier Des Etangs, A.
Hébrard, G.
Blandin, S.
Cassier, J.
Deeg, H.J.
Bonomo, A.S.
Bouchy, F.
Désert, J.-M.
Ehrenreich, D.
Deleuil, M.
Díaz, R.F.
Moutou, C.
Vidal-Madjar, A.
author_sort Lecavelier Des Etangs, A.
title Search for rings and satellites around the exoplanet CoRoT-9b using Spitzer photometry
title_short Search for rings and satellites around the exoplanet CoRoT-9b using Spitzer photometry
title_full Search for rings and satellites around the exoplanet CoRoT-9b using Spitzer photometry
title_fullStr Search for rings and satellites around the exoplanet CoRoT-9b using Spitzer photometry
title_full_unstemmed Search for rings and satellites around the exoplanet CoRoT-9b using Spitzer photometry
title_sort search for rings and satellites around the exoplanet corot-9b using spitzer photometry
url http://hdl.handle.net/20.500.12110/paper_00046361_v603_n_p_LecavelierDesEtangs
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