The Astronomical Journal (Jan 2024)

A Formally Motivated Retrieval Framework Applied to the High-resolution Transmission Spectrum of HD 189733 b

  • Doriann Blain,
  • Alejandro Sánchez-López,
  • Paul Mollière

DOI
https://doi.org/10.3847/1538-3881/ad2c8b
Journal volume & issue
Vol. 167, no. 4
p. 179

Abstract

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Ground-based high-resolution spectra provide a powerful tool for characterizing exoplanet atmospheres. However, they are greatly hampered by the dominating telluric and stellar lines, which need to be removed prior to any analysis. Such removal techniques (“preparing pipelines”) deform the spectrum; hence, a key point is to account for this process in the forward models used in retrievals. We develop a formal derivation on how to prepare froward models for retrievals, in the case where the telluric and instrumental deformations can be represented as a matrix multiplied element-wise with the data. We also introduce the notion of a “bias pipeline metric,” which can be used to compare the bias potential of preparing pipelines. We use the resulting framework to retrieve simulated observations of 1D and 3D exoplanet atmospheres and to reanalyze high-resolution ( ${ \mathcal R }\approx {\rm{80,400}}$ ) near-infrared (0.96–1.71 μ m) CARMENES transit data of HD 189733 b. We compare these results with those obtained from a cross-correlation function analysis. With our fiducial retrieval, we find a blueshift of the absorption features of $-{5.51}_{-0.53}^{+0.66}$ km s ^−1 . In addition, we retrieve a H _2 O log _10 (VMR) of $-{2.39}_{-0.16}^{+0.12}$ and a temperature of ${660}_{-11}^{+6}$ K. We are also able to put upper limits for the abundances of CH _4 , CO, H _2 S, HCN, and NH _3 , consistent with a subsolar-metallicity atmosphere enriched in H _2 O. We retrieve a broadened line shape, consistent with rotation- and wind-induced line broadening. Finally, we find a lower limit for the pressure of an opaque cloud consistent with a clear atmosphere, and we find no evidence for hazes.

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