English

A deeper view of the CoRoT-9 planetary system. A small non-zero eccentricity for CoRoT-9b likely generated by planet-planet scattering

Earth and Planetary Astrophysics 2017-07-05 v2

Abstract

CoRoT-9b is one of the rare long-period (P=95.3 days) transiting giant planets with a measured mass known to date. We present a new analysis of the CoRoT-9 system based on five years of radial-velocity (RV) monitoring with HARPS and three new space-based transits observed with CoRoT and Spitzer. Combining our new data with already published measurements we redetermine the CoRoT-9 system parameters and find good agreement with the published values. We uncover a higher significance for the small but non-zero eccentricity of CoRoT-9b (e=0.1330.037+0.042e=0.133^{+0.042}_{-0.037}) and find no evidence for additional planets in the system. We use simulations of planet-planet scattering to show that the eccentricity of CoRoT-9b may have been generated by an instability in which a 50 M\sim 50~M_\oplus planet was ejected from the system. This scattering would not have produced a spin-orbit misalignment, so we predict that CoRoT-9b orbit should lie within a few degrees of the initial plane of the protoplanetary disk. As a consequence, any significant stellar obliquity would indicate that the disk was primordially tilted.

Keywords

Cite

@article{arxiv.1703.06477,
  title  = {A deeper view of the CoRoT-9 planetary system. A small non-zero eccentricity for CoRoT-9b likely generated by planet-planet scattering},
  author = {A. S. Bonomo and G. Hébrard and S. N. Raymond and F. Bouchy and A. Lecavelier des Etangs and P. Bordé and S. Aigrain and J. -M. Almenara and R. Alonso and J. Cabrera and Sz. Csizmadia and C. Damiani and H. J. Deeg and M. Deleuil and R. F. Díaz and A. Erikson and M. Fridlund and D. Gandolfi and E. Guenther and T. Guillot and A. Hatzes and A. Izidoro and C. Lovis and C. Moutou and M. Ollivier and M. Pätzold and H. Rauer and D. Rouan and A. Santerne and J. Schneider},
  journal= {arXiv preprint arXiv:1703.06477},
  year   = {2017}
}

Comments

11 pages, 8 figures, accepted for publication in Astronomy and Astrophysics