Characterisation of the TOI-421 planetary system using CHEOPS, TESS, and archival radial velocity data
Abstract
The TOI-421 planetary system contains two sub-Neptune-type planets and is a prime target to study the formation and evolution of planets and their atmospheres. The inner planet is especially interesting as the existence of a hydrogen-dominated atmosphere at its orbital separation cannot be explained by current formation models without previous orbital migration. We jointly analysed photometric data of three TESS sectors and six CHEOPS visits as well as 156 radial velocity data points to retrieve improved planetary parameters. We also searched for TTVs and modelled the interior structure of the planets. Finally, we simulated the evolution of the primordial H-He atmospheres of the planets using two different modelling frameworks. We determine the planetary radii and masses of TOI-421 b and c to be , , , and . We do not detect any statistically significant TTV signals. Assuming the presence of a hydrogen-dominated atmosphere, the interior structure modelling results in both planets having extensive envelopes. While the modelling of the atmospheric evolution predicts for TOI-421 b to have lost any primordial atmosphere that it could have accreted at its current orbital position, TOI-421 c could have started out with an initial atmospheric mass fraction somewhere between 10 and 35%. We conclude that the low observed mean density of TOI-421 b can only be explained by either a bias in the measured planetary parameters (e.g. driven by high-altitude clouds) and/or in the context of orbital migration. We also find that the results of atmospheric evolution models are strongly dependent on the employed planetary structure model.
Cite
@article{arxiv.2404.11074,
title = {Characterisation of the TOI-421 planetary system using CHEOPS, TESS, and archival radial velocity data},
author = {A. F. Krenn and D. Kubyshkina and L. Fossati and J. A. Egger and A. Bonfanti and A. Deline and D. Ehrenreich and M. Beck and W. Benz and J. Cabrera and T. G. Wilson and A. Leleu and S. G. Sousa and V. Adibekyan and A. C. M. Correira and Y. Alibert and L. Delrez and M. Lendl and J. A. Patel and J. Venturini and R. Alonso and G. Anglada and J. Asquier and T. Bárczy and D. Barrado Navascues and S. C. C. Barros and W. Baumjohann and T. Beck and N. Billot and X. Bonfils and L. Borsato and A. Brandeker and C. Broeg and S. Charnoz and A. Collier Cameron and Sz. Csizmadia and P. E. Cubillos and M. B. Davies and M. Deleuil and O. D. S. Demangeon and B. -O. Demory and A. Erikson and A. Fortier and M. Fridlund and D. Gandolfi and M. Gillon and M. Güdel and M. N. Günther and J. Hasiba and A. Heitzmann and C. Helling and S. Hoyer and K. G. Isaak and L. L. Kiss and K. W. F. Lam and J. Laskar and A. Lecavelier des Etangs and C. Lovis and D. Magrin and P. F. L. Maxted and C. Mordasini and V. Nascimbeni and G. Olofsson and R. Ottensamer and I. Pagano and E. Pallé and G. Peter and G. Piotto and D. Pollacco and D. Queloz and R. Ragazzoni and N. Rando and H. Rauer and I. Ribas and M. Rieder and N. C. Santos and G. Scandariato and D. Ségransan and A. E. Simon and A. M. S. Smith and M. Stalport and M. Steller and Gy. M. Szabó and N. Thomas and S. Udry and B. Ulmer and V. Van Grootel and E. Villaver and V. Viotto and N. A. Walton and T. Zingales},
journal= {arXiv preprint arXiv:2404.11074},
year = {2024}
}
Comments
21 pages, 12 figures, accepted for publication in A&A