English

TOI-3862 b: A dense super-Neptune deep in the hot Neptune desert

Earth and Planetary Astrophysics 2026-01-16 v1

Abstract

The structure and evolution of close-in exoplanets are shaped by atmospheric loss and migration processes, which give rise to key population features such as the hot Neptune desert, ridge, and savanna - regions of the period-radius space whose boundaries offer critical insights into planetary formation and survival. As part of the KESPRINT collaboration, we selected the TESS transiting planet candidate TOI-3862.01 for radial velocity follow-up to confirm its planetary nature and characterize its mass and bulk properties. This planet candidate is of particular interest due to its position in the middle of the hot Neptune desert, making it a valuable probe for testing theories of planet migration and atmospheric loss. We confirmed the planetary nature and determined the mass of TOI-3862.01 (hereinafter TOI-3862b) by performing a joint fit with both transit and radial velocity data, precisely characterizing the bulk properties of this planet. TOI-3862b is a super-Neptune on a 1.56-day orbit around a Sun-like star with an effective temperature of 5300±\pm50K. It has a mass of 53.72.9+2.8_{-2.9}^{+2.8} M_{\oplus} and a radius of 5.53±\pm0.18 R_{\oplus}, corresponding to a density of 1.7±\pm0.2 g/cm^3. This places it among the rare population of hot and dense super-Neptune desert planets. TOI-3862b, residing deep in the hot Neptune desert, represents a rare occurrence in an otherwise sparsely populated region, offering a valuable opportunity to probe the processes that may allow planets to survive in such environments.

Keywords

Cite

@article{arxiv.2601.10450,
  title  = {TOI-3862 b: A dense super-Neptune deep in the hot Neptune desert},
  author = {Ilaria Carleo and Amadeo Castro-González and Enric Pallé and Felipe Murgas and Grzegorz Nowak and Gaia Lacedelli and Thomas Masseron and Emily W. Wong and Patrick Eggenberger and Vincent Bourrier and Dawid Jankowski and Krzysztof Goździewski and Douglas R. Alves and James S. Jenkins and Sergio Messina and Keivan G. Stassun and Jose I. Vines and Matteo Brogi and David R. Ciardi and Catherine A. Clark and William Cochran and Karen A. Collins and Hans J. Deeg and Elise Furlan and Davide Gandolfi and Samuel Geraldía González and Artie P. Hatzes and Coel Hellier and Steve B. Howell and Judith Korth and Jorge Lillo-Box and John H. Livingston and Jaume Orell-Miquel and Carina M. Persson and Seth Redfield and Boris Safonov and David Baker and Rafael Delfin Barrena Delgado and Allyson Bieryla and Andrew Boyle and Pau Bosch-Cabot and Núria Casasayas Barris and Stavros Chairetas and Jerome P. de Leon and Izuru Fukuda and Akihiko Fukui and Pere Guerra and Kai Ikuta and Kiyoe Kawauchi and Emil Knudstrup and Florence Libotte and Michael B. Lund and Rafael Luque and Eduardo Lorenzo Martín Guerrero de Escalante and Bob Massey and Edward J. Michaels and Giuseppe Morello and Norio Narita and Hannu Parvianien and Richard P. Schwarz and Avi Shporer and Monika Stangret and Noriharu Watanabe and Cristilyn N. Watkins},
  journal= {arXiv preprint arXiv:2601.10450},
  year   = {2026}
}