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Impact of planetary mass uncertainties on exoplanet atmospheric retrievals

Title: Impact of planetary mass uncertainties on exoplanet atmospheric retrievals
Authors: Changeat, Quentin; Keyte, Luke; Waldmann, Ingo P; Tinetti, Giovanna
Publication Year: 2019
Collection: Astrophysics
Subject Terms: Astrophysics - Earth and Planetary Astrophysics
Description: In current models used to interpret exoplanet atmospheric observations, the planet mass is treated as a prior and is estimated independently with external methods, such as RV or TTV techniques. This approach is necessary as available spectroscopic data do not have sufficient wavelength coverage and/or SNR to infer the planetary mass. We examine here the impact of mass uncertainties on spectral retrieval analyses for a host of atmospheric scenarios. Our approach is both analytical and numerical: we first use simple approximations to extract analytically the influence of each parameter to the wavelength-dependent transit depth. We then adopt a fully Bayesian retrieval model to quantify the propagation of the mass uncertainty onto other atmospheric parameters. We found that for clear-sky, gaseous atmospheres the posterior distributions are the same when the mass is known or retrieved. The retrieved mass is very accurate, with a precision of more than 10%, provided the wavelength coverage and S/N are adequate. When opaque clouds are included in the simulations, the uncertainties in the retrieved mass increase, especially for high altitude clouds. However atmospheric parameters such as the temperature and trace-gas abundances are unaffected by the knowledge of the mass. Secondary atmospheres are more challenging due to the higher degree of freedom for the atmospheric main component, which is unknown. For broad wavelength range and adequate SNR, the mass can still be retrieved accurately and precisely if clouds are not present, and so are all the other atmospheric/planetary parameters. When clouds are added, we find that the mass uncertainties may impact substantially the retrieval of the mean molecular weight: an independent characterisation of the mass would therefore be helpful to capture/confirm the main atmospheric constituent.; Comment: 19 pages, 12 figures, Accepted in ApJ
Document Type: Working Paper
DOI: 10.3847/1538-4357/ab8f8b
Access URL: http://arxiv.org/abs/1908.06305
Accession Number: edsarx.1908.06305
Database: arXiv