A Nondetection of Iron in the First High-resolution Emission Study of the Lava Planet 55 Cnc e

Author:

Rasmussen Kaitlin C.ORCID,Currie Miles H.ORCID,Hagee CelesteORCID,van Buchem ChristiaanORCID,Malik MatejORCID,Savel Arjun B,Brogi MatteoORCID,Rauscher EmilyORCID,Meadows VictoriaORCID,Mansfield MeganORCID,Kempton Eliza M.-R.ORCID,Desert Jean-MichelORCID,Wardenier Joost P.ORCID,Pino LorenzoORCID,Line MichaelORCID,Parmentier VivienORCID,Seifahrt AndreasORCID,Kasper DavidORCID,Brady MadisonORCID,Bean Jacob L.ORCID

Abstract

Abstract Close-in lava planets represent an extreme example of terrestrial worlds, but their high temperatures may allow us to probe a diversity of crustal compositions. The brightest and most well-studied of these objects is 55 Cancri e, a nearby super-Earth with a remarkably short 17 hr orbit. However, despite numerous studies, debate remains about the existence and composition of its atmosphere. We present upper limits on the atmospheric pressure of 55 Cnc e derived from high-resolution time-series spectra taken with Gemini-N/MAROON-X. Our results are consistent with current crustal evaporation models for this planet which predict a thin ∼100 mbar atmosphere. We conclude that, if a mineral atmosphere is present on 55 Cnc e, the atmospheric pressure is below 100 mbar.

Funder

NASA ∣ NASA Astrobiology Institute

Heising-Simons Foundation

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A secondary atmosphere on the rocky exoplanet 55 Cancri e;Nature;2024-05-08

2. High-resolution Spectroscopic Reconnaissance of a Temperate Sub-Neptune;The Astrophysical Journal Letters;2024-04-24

3. Atmospheric Metallicity and C/O of HD 189733 b from High-resolution Spectroscopy;The Astronomical Journal;2024-01-01

4. Super-Earths and Earth-like exoplanets;Reference Module in Earth Systems and Environmental Sciences;2024

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