English

Near-circular orbits for planets around M/K-type stars with Earth-like sizes and instellations

Earth and Planetary Astrophysics 2025-01-22 v1

Abstract

Recent advances have enabled the discovery of a population of potentially Earth-like planets, yet their orbital eccentricity, which governs their climate and provides clues about their origin and dynamical history, is still largely unconstrained. We identify a sample of 17 transiting exoplanets around late-type stars with similar radii and irradiation to that of Earth and use the "photoeccentric effect" - which exploits transit durations - to infer their eccentricity distribution via hierarchical Bayesian modelling. Our analysis establishes that these worlds further resemble Earth in that their eccentricities are nearly circular (mean eccentricity =0.0600.028+0.040=0.060_{-0.028}^{+0.040} and 0.15\leq0.15), with the exception of one outlier of moderate eccentricity. The results hint at a subset population of dynamically warmer Earths, but this requires a larger sample to statistically confirm. The planets in our sample are thus largely subject to minimal eccentricity-induced seasonal variability and are consistent with emerging via smooth disk migration rather than violent planet-planet scattering.

Keywords

Cite

@article{arxiv.2501.10571,
  title  = {Near-circular orbits for planets around M/K-type stars with Earth-like sizes and instellations},
  author = {David Kipping and Diana Solano-Oropeza and Daniel A. Yahalomi and Madison Li and Avishi Poddar and Xunhe Zhang},
  journal= {arXiv preprint arXiv:2501.10571},
  year   = {2025}
}

Comments

To appear in Nature Astronomy