Updated Mass, Eccentricity, and Tidal Heating Constraints for the Earth-sized Planet LP 791-18 d
Abstract
LP 791-18 d is a temperate Earth-sized planet orbiting a late M dwarf, surrounded by an interior super-Earth (LP 791-18 b, = 1.2 , days) and an exterior sub-Neptune (LP 791-18 c, = 2.5 , days). Dynamical interactions between LP 791-18 d and c produce transit timing variations (TTVs) that can be used to constrain the planet masses and eccentricities. These interactions can also force a non-zero eccentricity for LP 791-18 d, which raises its internal temperature through tidal heating and could drive volcanic outgassing. We present three new transit observations of LP 791-18 c with Palomar/WIRC, including the most precise TTV measurements ( 6 seconds) of this planet to date. We fit these times with a TTV model to obtain updated constraints on the mass, eccentricity, and tidal heat flux of LP 791-18 d. We reduce the mass uncertainty by more than a factor of two ( = 0.91 0.19 ). We perform an updated fit assuming tidally damped free eccentricities and find and , consistent with circular orbits. We find that the observed TTVs are not sensitive to 0.01. Without a tidally damped eccentricity prior, , much higher than the eccentricity predicted by n-body simulations incorporating the effects of dynamical excitation and tidal damping. We predict the timing of upcoming JWST secondary eclipse observations for LP 791-18 d, which could tightly constrain the eccentricity and tidal quality factor of this Earth-sized exoplanet.
Cite
@article{arxiv.2501.18700,
title = {Updated Mass, Eccentricity, and Tidal Heating Constraints for the Earth-sized Planet LP 791-18 d},
author = {Michael Greklek-McKeon and Heather A. Knutson and W. Garrett Levine and Renyu Hu and Morgan Saidel and Jonathan Gomez Barrientos and Konstantin Batygin and Björn Benneke},
journal= {arXiv preprint arXiv:2501.18700},
year = {2025}
}
Comments
14 pages, 8 figures, 4 tables, submitted to The Astronomical Journal