The K2-24 planetary system revisited by CHEOPS
Abstract
K2-24 is a planetary system composed of two transiting low-density Neptunians locked in an almost perfect 2:1 resonance and showing large TTVs, i.e., an excellent laboratory to search for signatures of planetary migration. Previous studies performed with K2, Spitzer and RV data tentatively claimed a significant non-zero eccentricity for one or both planets, possibly high enough to challenge the scenario of pure disk migration through resonant capture. With 13 new CHEOPS light curves (seven of planet -b, six of planet -c), we carried out a global photometric and dynamical re-analysis by including all the available literature data as well. We got the most accurate set of planetary parameters to date for the K2-24 system, including radii and masses at 1% and 5% precision (now essentially limited by the uncertainty on stellar parameters) and non-zero eccentricities , detected at very high significance for both planets. Such relatively large values imply the need for an additional physical mechanism of eccentricity excitation during or after the migration stage. Also, while the accuracy of the previous TTV model had drifted by up to 0.5 days at the current time, we constrained the orbital solution firmly enough to predict the forthcoming transits for the next ~15 years, thus enabling an efficient follow-up with top-level facilities such as JWST or ESPRESSO.
Keywords
Cite
@article{arxiv.2409.02995,
title = {The K2-24 planetary system revisited by CHEOPS},
author = {V. Nascimbeni and L. Borsato and P. Leonardi and S. G. Sousa and T. G. Wilson and A. Fortier and A. Heitzmann and G. Mantovan and R. Luque and T. Zingales and G. Piotto and Y. Alibert and R. Alonso and T. Bárczy and D. Barrado Navascues and S. C. Barros and W. Baumjohann and T. Beck and W. Benz and N. Billot and F. Biondi and A. Brandeker and C. Broeg and M. -D. Busch and A. Collier Cameron and A. C. M. Correia and Sz. Csizmadia and P. E. Cubillos and M. B. Davies and M. Deleuil and A. Deline and L. Delrez and O. D. S. Demangeon and B. -O. Demory and A. Derekas and B. Edwards and D. Ehrenreich and A. Erikson and L. Fossati and M. Fridlund and D. Gandolfi and K. Gazeas and M. Gillon and M. Güdel and M. N. Günther and Ch. Helling and K. G. Isaak and F. Kerschbaum and L. Kiss and J. Korth and K. W. F. Lam and J. Laskar and A. Lecavelier des Etangs and A. Leleu and M. Lendl and D. Magrin and P. F. L. Maxted and B. Merín and C. Mordasini and G. Olofsson and R. Ottensamer and I. Pagano and E. Pallé and G. Peter and D. Pollacco and D. Queloz and R. Ragazzoni and N. Rando and H. Rauer and I. Ribas and N. C. Santos and G. Scandariato and D. Ségransan and A. E. Simon and A. M. S. Smith and R. Southworth and M. Stalport and S. Sulis and M. Gy. Szabó and S. Udry and B. Ulmer and V. Van Grootel and J. Venturini and E. Villaver and N. A. Walton},
journal= {arXiv preprint arXiv:2409.02995},
year = {2024}
}
Comments
19 pages, 11 figures, 8 tables. Accepted for publication in A&A on September 4, 2024. Typos corrected