GJ 523b is a Massive, 170 Myr-old Mega-Earth, Likely on a Polar Orbit
Abstract
We use WIYN/NEID radial velocity measurements to confirm the planetary nature and measure the mass of the TESS transiting exoplanet candidate around the mid-K dwarf GJ 523 (, ). We find that GJ 523b is on a 17.75 day orbit and has a radius of , a mass of , and a zero-albedo equilibrium temperature of 538 K. GJ 523b's high bulk density of g cm and position on a mass-radius diagram implies a surprising low atmospheric mass fraction despite its relatively large mass. Additionally, we determine that the system has an age of Myr through a gyrochronological analysis of GJ 523 and its comoving companions. We also use the SED-derived stellar radius, the photometric rotation period, and the spectroscopic to derive a stellar inclination of degrees, implying that GJ 523b has a minimum orbital obliquity of degrees. GJ 523b's high mass, apparent lack of a gas envelope, young age, and high orbital obliquity present a challenge to typical planet formation pathways, and at the moment there is not enough data on the system to definitively determine how GJ 523b formed. Finally, we present a new observational classification for ultra-dense, sub-Neptune-sized exoplanets similar to GJ 523b: the mega-Earths, planets with and g cm.
Keywords
Cite
@article{arxiv.2603.24682,
title = {GJ 523b is a Massive, 170 Myr-old Mega-Earth, Likely on a Polar Orbit},
author = {Maxwell A. Kroft and Thomas G. Beatty and Joseph M. Salzer and Claire Zwicker and Anastasia Triantafillides and Juliette Becker and Melinda Soares-Furtado and Jessi Cisewski-Kehe and Jack J. Lissauer and Tayt S. Armitage and Joseph R. Livesey and Ritvik Sai Narayan and Susanna Widicus Weaver and Ke Zhang and Allyson Bieryla and David R. Ciardi and Catherine A. Clark and Miranda Felsmann and Rachel B. Fernandes and Steve B. Howell and Michael B. Lund},
journal= {arXiv preprint arXiv:2603.24682},
year = {2026}
}
Comments
26 pages, 14 figures, submitted to AJ