English

LHS 1140 b is a potentially habitable water world

Earth and Planetary Astrophysics 2025-02-04 v2

Abstract

LHS 1140 b is a small planet orbiting in the habitable zone of its M4.5V dwarf host. Recent mass and radius constraints have indicated that it has either a thick H2_2-rich atmosphere or substantial water by mass. Here we present a transmission spectrum of LHS 1140 b between 1.7 and 5.2 μ\mum, obtained using the NIRSpec instrument on JWST. By combining spectral retrievals and self-consistent atmospheric models, we show that the transmission spectrum is inconsistent with H2_2-rich atmospheres with varied size and metallicity, leaving a water world as the remaining scenario to explain the planet's low density. Specifically, a H2_2-rich atmosphere would result in prominent spectral features of CH4_4 or CO2_2 on this planet, but they are not seen in the transmission spectrum. Instead, the data favors a high-mean-molecular-weight atmosphere (possibly N2_2-dominated with H2_2O and CO2_2) with a modest confidence. Forming the planet by accreting C- and N-bearing ices could naturally give rise to a CO2_2- or N2_2-dominated atmosphere, and if the planet evolves to or has the climate-stabilizing mechanism to maintain a moderate-size CO2_2/N2_2-dominated atmosphere, the planet could have liquid-water oceans. Our models suggest CO2_2 absorption features with an expected signal of 20 ppm at 4.2 μ\mum. As the existence of an atmosphere on TRAPPIST-1 planets is uncertain, LHS 1140 b may well present the best current opportunity to detect and characterize a habitable world.

Keywords

Cite

@article{arxiv.2403.13265,
  title  = {LHS 1140 b is a potentially habitable water world},
  author = {Mario Damiano and Aaron Bello-Arufe and Jeehyun Yang and Renyu Hu},
  journal= {arXiv preprint arXiv:2403.13265},
  year   = {2025}
}

Comments

20 pages, 10 figures, 9 tables, accepted for publication in ApJL