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The hot dayside and asymmetric transit of WASP-189 b seen by CHEOPS

  • M. Lendl
  • , Sz Csizmadia
  • , A. Deline
  • , L. Fossati
  • , D. Kitzmann
  • , K. Heng
  • , S. Hoyer
  • , S. Salmon
  • , W. Benz
  • , C. Broeg
  • , D. Ehrenreich
  • , A. Fortier
  • , D. Queloz
  • , A. Bonfanti
  • , A. Brandeker
  • , A. Collier Cameron
  • , L. Delrez
  • , A. Garcia Muñoz
  • , M. J. Hooton
  • , P. F.L. Maxted
  • B. M. Morris, V. Van Grootel, T. G. Wilson, Y. Alibert, R. Alonso, J. Asquier, T. Bandy, T. Bárczy, D. Barrado, S. C.C. Barros, W. Baumjohann, M. Beck, T. Beck, A. Bekkelien, M. Bergomi, N. Billot, F. Biondi, X. Bonfils, V. Bourrier, M. D. Busch, J. Cabrera, V. Cessa, S. Charnoz, B. Chazelas, C. Corral Van Damme, M. B. Davies, M. Deleuil, O. D.S. Demangeon, B. O. Demory, A. Erikson, J. Farinato, M. Fridlund, D. Futyan, D. Gandolfi, M. Gillon, P. Guterman, J. Hasiba, E. Hernandez, K. G. Isaak, L. Kiss, T. Kuntzer, A. Lecavelier Des Etangs, T. Lüftinger, J. Laskar, C. Lovis, D. Magrin, L. Malvasio, L. Marafatto, H. Michaelis, M. Munari, V. Nascimbeni, G. Olofsson, H. Ottacher, R. Ottensamer, I. Pagano, E. Pallé, G. Peter, D. Piazza, G. Piotto, D. Pollacco, F. Ratti, H. Rauer, R. Ragazzoni, N. Rando, I. Ribas, M. Rieder, R. Rohlfs, F. Safa, N. C. Santos, G. Scandariato, D. Ségransan, A. E. Simon, V. Singh, A. M.S. Smith, M. Sordet, S. G. Sousa, M. Steller, Gy M. Szabó, N. Thomas, M. Tschentscher, S. Udry, V. Viotto, I. Walter, N. A. Walton, F. Wildi, D. Wolter
  • Université de Genève
  • Space Research Institute
  • DLR
  • Center for Space and Habitability
  • LAM
  • University of Liège
  • University of Bern
  • University of Cambridge
  • Stockholm University
  • University of St Andrews
  • TU Berlin
  • Keele University
  • Instituto de Astrofisica de Canarias
  • Research Unit; CIBERNED and Universidad de La Laguna
  • ESTEC - European Space Research and Technology Centre
  • Admatis
  • ESAC campus
  • Ipatimup Diagnósticos
  • INAF Osservatorio Astronomico di Padova
  • LTHE (UMR 5564 CNRS/IRD/Université de Grenoble)
  • Université Paris Diderot
  • Lund Observatory
  • University of Leiden
  • Onsala Space Observatory
  • Istituto di Astrofisica e Planetologia Spaziali (IAPS)
  • Division Technique
  • Konkoly Observatory
  • Institut d’Astrophysique de Paris
  • University of Vienna
  • Sorbonne Univ.
  • INAF Osservatorio Astrofisico di Catania
  • University of Padova
  • University of Warwick
  • Free University of Berlin
  • University of Sheffield
  • Institut d’Estudis Espacials de Catalunya (IEEC)
  • Eötvös Loránd University
  • Institute of Astronomy

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

The CHEOPS space mission dedicated to exoplanet follow-up was launched in December 2019, equipped with the capacity to perform photometric measurements at the 20 ppm level. As CHEOPS carries out its observations in a broad optical passband, it can provide insights into the reflected light from exoplanets and constrain the short-wavelength thermal emission for the hottest of planets by observing occultations and phase curves. Here, we report the first CHEOPS observation of an occultation, namely, that of the hot Jupiter WASP-189 b, a MP ≈ 2MJ planet orbiting an A-type star. We detected the occultation of WASP-189 b at high significance in individual measurements and derived an occultation depth of dF = 87.9 ± 4.3 ppm based on four occultations. We compared these measurements to model predictions and we find that they are consistent with an unreflective atmosphere heated to a temperature of 3435 ± 27 K, when assuming inefficient heat redistribution. Furthermore, we present two transits of WASP-189 b observed by CHEOPS. These transits have an asymmetric shape that we attribute to gravity darkening of the host star caused by its high rotation rate. We used these measurements to refine the planetary parameters, finding a ~25% deeper transit compared to the discovery paper and updating the radius of WASP-189 b to 1.619 ± 0.021RJ. We further measured the projected orbital obliquity to be λ = 86.4-4.4+2.9°, a value that is in good agreement with a previous measurement from spectroscopic observations, and derived a true obliquity of ψ = 85.4 ± 4.3°. Finally, we provide reference values for the photometric precision attained by the CHEOPS satellite: for the V = 6.6 mag star, and using a 1-h binning, we obtain a residual RMS between 10 and 17 ppm on the individual light curves, and 5.7 ppm when combining the four visits.

langue originaleAnglais
Numéro d'articleA94
journalAstronomy and Astrophysics
Volume643
Les DOIs
étatPublié - 1 nov. 2020
Modification externeOui

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