English

Composition of Terrestrial Exoplanet Atmospheres from Meteorite Outgassing Experiments

Earth and Planetary Astrophysics 2021-04-20 v1

Abstract

Terrestrial exoplanets likely form initial atmospheres through outgassing during and after accretion, although there is currently no first-principles understanding of how to connect a planet's bulk composition to its early atmospheric properties. Important insights into this connection can be gained by assaying meteorites, representative samples of planetary building blocks. We perform laboratory outgassing experiments that use a mass spectrometer to measure the abundances of volatiles released when meteorite samples are heated to 1200 ^{\circ}C. We find that outgassing from three carbonaceous chondrite samples consistently produce H2_2O-rich (averaged ~66 %) atmospheres but with significant amounts of CO (~18 %) and CO2_2 (~15 %) as well as smaller quantities of H2_2 and H2_2S (up to 1 %). These results provide experimental constraints on the initial chemical composition in theoretical models of terrestrial planet atmospheres, supplying abundances for principal gas species as a function of temperature.

Keywords

Cite

@article{arxiv.2104.08360,
  title  = {Composition of Terrestrial Exoplanet Atmospheres from Meteorite Outgassing Experiments},
  author = {Maggie A. Thompson and Myriam Telus and Laura Schaefer and Jonathan J. Fortney and Toyanath Joshi and David Lederman},
  journal= {arXiv preprint arXiv:2104.08360},
  year   = {2021}
}

Comments

42 pages, 9 Figures, 2 Tables, 4 Supplementary Figures, 3 Supplementary Tables, published in Nature Astronomy (2021)