TOI-6478 b: a cold under-dense Neptune transiting a fully convective M dwarf from the thick disc
Abstract
Growing numbers of exoplanet detections continue to reveal the diverse nature of planetary systems. Planet formation around late-type M dwarfs is of particular interest. These systems provide practical laboratories to measure exoplanet occurrence rates for M dwarfs, thus testing how the outcomes of planet formation scale with host mass, and how they compare to Sun-like stars. Here, we report the discovery of TOI-6478b, a cold (K) Neptune-like planet orbiting an M5 star (, , K) which is a member of the Milky Way's thick disc. We measure a planet radius of on a d orbit. Using radial velocities, we calculate an upper mass limit of (, with confidence. TOI-6478b is a milestone planet in the study of cold, Neptune-like worlds. Thanks to its large atmospheric scale height, it is amenable to atmospheric characterisation with facilities such as JWST, and will provide an excellent probe of atmospheric chemistry in this cold regime. It is one of very few transiting exoplanets that orbit beyond their system's ice-line whose atmospheric chemical composition can be measured. Based on our current understanding of this planet, we estimate TOI-6478b's spectroscopic features (in transmission) can be as high as the widely studied planet K2-18b.
Cite
@article{arxiv.2504.06848,
title = {TOI-6478 b: a cold under-dense Neptune transiting a fully convective M dwarf from the thick disc},
author = {Madison G. Scott and Amaury H. M. J. Triaud and Khalid Barkaoui and Daniel Sebastian and Adam J. Burgasser and Karen A. Collins and Georgina Dransfield and Coel Hellier and Steve B. Howell and Anjali A. A. Piette and Benjamin V. Rackham and Keivan G. Stassun and Amalie Stockholm and Mathilde Timmermans and Cristilyn N. Watkins and Michael Fausnaugh and Akihiko Fukui and Jon M. Jenkins and Norio Narita and George Ricker and Emma Softich and Richard P. Schwarz and Sara Seager and Avi Shporer and Christopher Theissen and Joseph D. Twicken and Joshua N. Winn and David Watanabe},
journal= {arXiv preprint arXiv:2504.06848},
year = {2025}
}
Comments
19 pages, 17 figures, accepted for publication in MNRAS