An extremely low-density and temperate giant exoplanet
Abstract
Transiting extrasolar planets are key objects in the study of the formation, migration, and evolution of planetary systems. In particular, the exploration of the atmospheres of giant planets, through transmission spectroscopy or direct imaging, has revealed a large diversity in their chemical composition and physical properties. Studying these giant planets allows one to test the global climate models that are used for the Earth and other solar system planets. However, these studies are mostly limited either to highly-irradiated transiting giant planets or directly-imaged giant planets at large separations. Here we report the physical characterisation of the planets in a bright multi-planetary system (HIP41378) in which the outer planet, HIP41378 f is a Saturn-sized planet (9.2 0.1 R) with an anomalously low density of 0.09 0.02 g cm that is not yet understood. Its equilibrium temperature is about 300 K. Therefore, it represents a planet with a mild temperature, in between the hot Jupiters and the colder giant planets of the Solar System. It opens a new window for atmospheric characterisation of giant exoplanets with a moderate irradiation, with the next-generation space telescopes such as JWST and ARIEL as well as the extremely-large ground-based telescopes. HIP41378 f is thus an important laboratory to understand the effect of the irradiation on the physical properties and chemical composition of the atmosphere of planets.
Cite
@article{arxiv.1911.07355,
title = {An extremely low-density and temperate giant exoplanet},
author = {A. Santerne and L. Malavolta and M. R. Kosiarek and F. Dai and C. D. Dressing and X. Dumusque and N. C. Hara and T. A. Lopez and A. Mortier and A. Vanderburg and V. Adibekyan and D. J. Armstrong and D. Barrado and S. C. C. Barros and D. Bayliss and D. Berardo and I. Boisse and A. S. Bonomo and F. Bouchy and D. J. A. Brown and L. A. Buchhave and R. P. Butler and A. Collier Cameron and R. Cosentino and J. D. Crane and I. J. M. Crossfield and M. Damasso and M. R. Deleuil and E. Delgado Mena and O. Demangeon and R. F. Díaz and J. -F. Donati and P. Figueira and B. J. Fulton and A. Ghedina and A. Harutyunyan and G. Hébrard and L. A. Hirsch and S. Hojjatpanah and A. W. Howard and H. Isaacson and D. W. Latham and J. Lillo-Box and M. López-Morales and C. Lovis and A. F. Martinez Fiorenzano and E. Molinari and O. Mousis and C. Moutou and C. Nava and L. D. Nielsen and H. P. Osborn and E. A. Petigura and D. F. Phillips and D. L. Pollacco and E. Poretti and K. Rice and N. C. Santos and D. Ségransan and S. A. Shectman and E. Sinukoff and S. G. Sousa and A. Sozzetti and J. K. Teske and S. Udry and A. Vigan and S. X. Wang and C. A. Watson and L. M. Weiss and P. J. Wheatley and J. N. Winn},
journal= {arXiv preprint arXiv:1911.07355},
year = {2019}
}
Comments
Preprint submitted to Nature Astronomy. The results have not been peer-reviewed yet. Supplementary informations available as ancillary file