English

Obliquity Constraints for the Extremely Eccentric Sub-Saturn Kepler-1656 b

Earth and Planetary Astrophysics 2024-08-01 v1

Abstract

The orbits of close-in exoplanets provide clues to their formation and evolutionary history. Many close-in exoplanets likely formed far out in their protoplanetary disks and migrated to their current orbits, perhaps via high-eccentricity migration (HEM), a process that can also excite obliquities. A handful of known exoplanets are perhaps caught in the act of HEM, as they are observed on highly eccentric orbits with tidal circularization timescales shorter than their ages. One such exoplanet is Kepler-1656 b, which is also the only known non-giant exoplanet (<100 MM_\oplus) with an extreme eccentricity (e=0.84). We measured the sky-projected obliquity of Kepler-1656 b by observing the Rossiter-McLaughlin effect during a transit with the Keck Planet Finder. Our data are consistent with an aligned orbit, but are also consistent with moderate misalignment with λ<50\lambda < 50 deg at 95% confidence, with the most likely solution of 3521.6+14.935^{+14.9}_{-21.6} deg. A low obliquity would be an unlikely outcome of most eccentricity-exciting scenarios, but we show that the properties of the outer companion in the system are consistent with the coplanar HEM mechanism. Alternatively, if the system is not relatively coplanar (<20 deg mutual inclination), Kepler-1656 b may be presently at a rare snapshot of long-lived eccentricity oscillations that do not induce migration. Kepler-1656 b is only the fourth exoplanet with e>0.8 to have its obliquity constrained; expanding this population will help establish the degree to which orbital misalignment accompanies migration. Future work that constrains the mutual inclinations of outer perturbers will be key for distinguishing plausible mechanisms.

Keywords

Cite

@article{arxiv.2407.21188,
  title  = {Obliquity Constraints for the Extremely Eccentric Sub-Saturn Kepler-1656 b},
  author = {Ryan A. Rubenzahl and Andrew W. Howard and Samuel Halverson and Cristobal Petrovich and Isabel Angelo and Guðmundur Stefánsson and Fei Dai and Aaron Householder and Benjamin Fulton and Steven R. Gibson and Arpita Roy and Abby P. Shaum and Howard Isaacson and Max Brodheim and William Deich and Grant M. Hill and Bradford Holden and Daniel Huber and Russ R. Laher and Kyle Lanclos and Joel N. Payne and Erik A. Petigura and Christian Schwab and Josh Walawender and Sharon X. Wang and Lauren M. Weiss and Joshua N. Winn and Jason T. Wright},
  journal= {arXiv preprint arXiv:2407.21188},
  year   = {2024}
}

Comments

11 pages, 5 figures, accepted to ApJL

R2 v1 2026-06-28T17:58:43.280Z