Hot Neptunes, gaseous planets smaller than Saturn (∼ 3-8 R⊕) with orbital periods less than 10 days, are rare. Models predict this is due to high-energy stellar irradiation stripping planetary atmospheres over time, often leaving behind only rocky planetary cores. We present the discovery of a 6.2 R⊕(0.55 RJ), 19.2 M⊕(0.060 MJ) planet transiting a red giant star every 4.21285 days. The old age and high equilibrium temperature yet remarkably low density of this planet suggests that its gaseous envelope should have been stripped by high-energy stellar irradiation billions of years ago. The present day planet mass and radius suggest atmospheric stripping was slower than predicted. Unexpectedly low stellar activity and/or late-stage planet inflation could be responsible for the observed properties of this system.
@article{arxiv.2303.06728,
title = {An unlikely survivor: a low-density hot Neptune orbiting a red giant star},
author = {Samuel Grunblatt and Nicholas Saunders and Daniel Huber and Daniel Thorngren and Shreyas Vissapragada and Stephanie Yoshida and Kevin Schlaufman and Steven Giacalone and Mason MacDougall and Ashley Chontos and Emma Turtelboom and Corey Beard and Joseph M. Akana Murphy and Malena Rice and Howard Isaacson and Ruth Angus and Andrew W. Howard},
journal= {arXiv preprint arXiv:2303.06728},
year = {2023}
}
Comments
54 pages, 16 figures, submitted to Science, comments welcome!