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ASTEP confirmation of a pair of long-period Jupiter-sized planets with extremely low densities transiting TOI-791

  • Georgina Dransfield
  • , Antoine C. Petit
  • , Amaury H.M.J. Triaud
  • , Tristan Guillot
  • , François Xavier Schmider
  • , Lyu Abe
  • , Abdelkrim Agabi
  • , Khalid Barkaoui
  • , Thomas A. Baycroft
  • , Philippe Bendjoya
  • , Rafael Brahm
  • , Karen A. Collins
  • , Billy Edwards
  • , Phil Evans
  • , Alix V. Freckelton
  • , Nolan Grieves
  • , Steve B. Howell
  • , Franco Mallia
  • , Djamel Mekarnia
  • , Angelica Psaridi
  • Daniel Sebastian, Keivan G. Stassun, Chris Stockdale, Amalie Stokholm, Olga Suarez, Thiam Guan Tan, Mathilde Timmermans, Cristilyn N. Watkins, Carl Ziegler, Abderahmane Soubkiou, François Bouchy, Marion Cointepas, Vincent Deloupy, Maximilian N. Günther, Michaël Gillon, Giovanni Isopi, Emmanuel Jehin, Jon M. Jenkins, Andrés Jordán, Martin B. Nielsen, Sara Seager, Avi Shporer, Julia V. Seidel, Michal Steiner, Trifon Trifonov, Joseph D. Twicken, Joshua N. Winn, Aldo Zapparata

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

1 Cita (Scopus)

Resumen

Gas giant planets with periods (Formula presented) orbiting Sun-like stars are a relatively uncommon outcome of planetary formation, and key questions about the nature and formation of this subpopulation remain unanswered. Theoretical models for the location of their formation (in situ or ex situ) and for their subsequent migration predict different outcomes in terms of planet masses and eccentricities, indicating that observations have a key role to play in disentangling their histories. In this work, we present the discovery and confirmation of a pair of long-period Jupiter-sized planets transiting an F7 star: TOI-791 b is a (Formula presented) planet on a (Formula presented) orbit, and TOI-791 c, a (Formula presented) planet on a (Formula presented) orbit. The two planets are within 0.07 per cent of a second-order 5:3 period commensurability leading to transit timing variations (TTVs) of up to 50 min. We confirm their planetary nature using ground-based photometry, including multiple full detections of the (Formula presented) transits of both TOI-791 b and c from Antarctica with ASTEP, making these the longest-duration transits ever observed in their entirety from the ground. Our detailed analysis of the TTV signal allows us to measure dynamical masses for both planets, which yield densities of (Formula presented) and (Formula presented), indicating that TOI-791 b and c are two of the lowest density giant planets ever detected. While these measurements are robust, further follow-up is needed to fully characterize the TTV signal and the architecture of the system.

Idioma originalInglés
Número de artículostag864
PublicaciónMonthly Notices of the Royal Astronomical Society
Volumen549
N.º4
DOI
EstadoPublicada - jul 2026
Publicado de forma externa

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