English

Detectability of biosignatures on LHS 1140 b

Earth and Planetary Astrophysics 2021-03-10 v1 Chemical Physics

Abstract

Terrestrial extrasolar planets around low-mass stars are prime targets when searching for atmospheric biosignatures with current and near-future telescopes. The habitable-zone Super-Earth LHS 1140 b could hold a hydrogen-dominated atmosphere and is an excellent candidate for detecting atmospheric features. In this study, we investigate how the instellation and planetary parameters influence the atmospheric climate, chemistry, and spectral appearance of LHS 1140 b. We study the detectability of selected molecules, in particular potential biosignatures, with the upcoming James Webb Space Telescope (JWST) and Extremely Large Telescope (ELT). In a first step we use the coupled climate-chemistry model, 1D-TERRA, to simulate a range of assumed atmospheric chemical compositions dominated by H2_2 and CO2_2. Further, we vary the concentrations of CH4_4 by several orders of magnitude. In a second step we calculate transmission spectra of the simulated atmospheres and compare them to recent transit observations. Finally, we determine the observation time required to detect spectral bands with low resolution spectroscopy using JWST and the cross-correlation technique using ELT. In H2_2-dominated and CH4_4-rich atmospheres O2_2 has strong chemical sinks, leading to low concentrations of O2_2 and O3_3. The potential biosignatures NH3_3, PH3_3, CH3_3Cl and N2_2O are less sensitive to the concentration of H2_2, CO2_2 and CH4_4 in the atmosphere. In the simulated H2_2-dominated atmosphere the detection of these gases might be feasible within 20 to 100 observation hours with ELT or JWST, when assuming weak extinction by hazes. If further observations of LHS 1140 b suggest a thin, clear, hydrogen-dominated atmosphere, the planet would be one of the best known targets to detect biosignature gases in the atmosphere of a habitable-zone rocky exoplanet with upcoming telescopes.

Keywords

Cite

@article{arxiv.2012.11426,
  title  = {Detectability of biosignatures on LHS 1140 b},
  author = {Fabian Wunderlich and Markus Scheucher and John Lee Grenfell and Franz Schreier and Clara Sousa-Silva and Mareike Godolt and Heike Rauer},
  journal= {arXiv preprint arXiv:2012.11426},
  year   = {2021}
}

Comments

18 pages, 11 figures

R2 v1 2026-06-23T21:08:24.429Z