Near-infrared transmission spectrum of TRAPPIST-1 h using Hubble WFC3 G141 observations
arXiv:2112.05510 · doi:10.1051/0004-6361/202142140
Abstract
The TRAPPIST-1 planetary system is favourable for transmission spectroscopy and offers the unique opportunity to study rocky planets with possibly non-primary envelopes. We present here the transmission spectrum of the seventh planet of the TRAPPIST-1 system, TRAPPIST-1 h (R=0.752 R, T=173K) using Hubble Space Telescope (HST), Wide Field Camera 3 Grism 141 (WFC3/G141) data. First we extracted and corrected the raw data to obtain a transmission spectrum in the near-infrared (NIR) band (1.1-1.7m). We corrected for stellar modulations using three different stellar contamination models; while some fit the data better, they are statistically not significant and the conclusion remains unchanged concerning the presence or lack thereof of an atmosphere. Finally, using a Bayesian atmospheric retrieval code, we put new constraints on the atmosphere composition of TRAPPIST-1h. According to the retrieval analysis, there is no evidence of molecular absorption in the NIR spectrum. This suggests the presence of a high cloud deck or a layer of photochemical hazes in either a primary atmosphere or a secondary atmosphere dominated by heavy species such as nitrogen. This result could even be the consequence of the lack of an atmosphere as the spectrum is better fitted using a flat line. We cannot yet distinguish between a primary cloudy or a secondary clear envelope using HST/WFC3 data; however, in most cases with more than 3 confidence, we can reject the hypothesis of a clear atmosphere dominated by hydrogen and helium. By testing the forced secondary atmospheric scenario, we find that a CO-rich atmosphere (i.e. with a volume mixing ratio of 0.2) is one of the best fits to the spectrum with a Bayes factor of 1.01, corresponding to a 2.1 detection.
Accepted for publication in Astronomy & Astrophysics
References in corpus (27)
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- Bayes in the sky: Bayesian inference and model selection in cosmology
- The Pale Orange Dot: The Spectrum and Habitability of Hazy Archean Earth
- The ExoMolOP Database: Cross-sections and k-tables for Molecules of Interest in High-Temperature Exoplanet Atmospheres
- Is Proxima Centauri b habitable? -- A study of atmospheric loss
- The Habitable Zones of Pre-Main-Sequence Stars
- UV Surface Environment of Earth-like Planets Orbiting FGKM Stars Through Geological Evolution
- On the Age of the TRAPPIST-1 System
- Reconnaissance of the TRAPPIST-1 exoplanet system in the Lyman- line
- A Volcanic Hydrogen Habitable Zone
- Temporal evolution of the high-energy irradiation and water content of TRAPPIST-1 exoplanets
- Early 2017 observations of TRAPPIST-1 with
- A review of possible planetary atmospheres in the TRAPPIST-1 system
- Hubble WFC3 Spectroscopy of the Habitable-zone Super-Earth LHS 1140 b
- TRAPPIST-1: Global Results of the Spitzer Exploration Science Program {\it Red Worlds}
- ARES V: No Evidence For Molecular Absorption in the HST WFC3 Spectrum of GJ 1132 b
- On The Compatibility of Ground-based and Space-based Data: WASP-96 b, An Example
- A comparison of chemical models of exoplanet atmospheres enabled by TauREx 3.1
- Planet-Planet Occultations in TRAPPIST-1 and Other Exoplanet Systems
- Tidal Heating and the Habitability of the TRAPPIST-1 Exoplanets
- O2- and CO-Rich Atmospheres for Potentially Habitable Environments on TRAPPIST-1 Planets
- Observing Isotopologue Bands in Terrestrial Exoplanet Atmospheres with the James Webb Space Telescope---Implications for Identifying Past Atmospheric and Ocean Loss
- Do the TRAPPIST-1 Planets Have Hydrogen-rich Atmospheres?
- Formation of aqua planets with water of nebular origin: Effects of water enrichment on the structure and mass of captured atmospheres of terrestrial planets
- 3C 279 in Outburst in June 2015: A Broadband-SED Study Based on the INTEGRAL Detection
- Ground-based follow-up observations of TRAPPIST-1 transits in the near-infrared
- Water delivery to the TRAPPIST-1 planets
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