A medium-resolution spectrum of the exoplanet HIP 65426 b
Simon Petrus, Micka\"el Bonnefoy, Ga\"el Chauvin, Benjamin Charnay,, Gabriel-Dominique Marleau, Raffaele Gratton, Anne-Marie Lagrange, Julien, Rameau, Chistoph Mordasini, Mathias Nowak, Philippe Delorme, Anthony, Boccaletti, Alexis Carlotti, Mathis Houll\'e, Arthur Vigan

TL;DR
This study presents medium-resolution spectroscopic analysis of exoplanet HIP 65426 b, deriving its atmospheric properties and discussing implications for its formation mechanism, using advanced data analysis and atmospheric modeling techniques.
Contribution
First detailed medium-resolution spectrum analysis of HIP 65426 b using Bayesian inference and atmospheric models, with insights into its formation and atmospheric composition.
Findings
Effective temperature ~1560K
Metallicity consistent with Jovian planets
C/O ratio suggests formation beyond water snowline
Abstract
Medium-resolution integral-field spectrographs (IFS) coupled with adaptive-optics such as Keck/OSIRIS, VLT/MUSE, or SINFONI are appearing as a new avenue for enhancing the detection and characterization capabilities of young, gas giant exoplanets at large heliocentric distances (>5 au). We analyzed K-band VLT/SINFONI medium-resolution (R_lambda~5577) observations of the young giant exoplanet HIP 65426 b. Our dedicated IFS data analysis toolkit (TExTRIS) optimized the cube building, star registration, and allowed for the extraction of the planet spectrum. A Bayesian inference with the nested sampling algorithm coupled with the self-consistent forward atmospheric models BT-SETTL15 and Exo-REM using the ForMoSA tool yields Teff=1560 +/- 100K, log(g)<4.40dex, [M/H]=0.05 +/- 0.22dex, and an upper limit on the C/O ratio (<0.55). The object is also re-detected with the so-called "molecular…
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