PAPER / ARXIV:2609.11828
Alexander Madurowicz , Emily Rickman , Daniella Bardalez Gagliuffi , James Mang , Kim Ward-Duong , William O. Balmer , Brendan P. Bowler , Emily Calamari , Henry Dennen , Jacqueline K Faherty , Kyle Franson , Mark R. Giovinazzi , Lisseth Gonzales Quevedo , Kielan K. W. Hoch , Piper Lentz , Elena Manjavacas , Klara Matuszewska , Ashley Messier , Caroline V. Morley , Evert Nasedkin , Marshall Perrin , Laurent Pueyo , Jean-Baptiste Ruffio , Christopher A. Theissen , Jerry W. Xuan
RESUMO
We present new JWST/NIRSpec IFU high contrast spectroscopic observations of the brown dwarf companion GJ 758 B. Extensive radial velocity monitoring of the primary has enabled high-precision measurements of the companion mass through characterization of their joint orbital dynamics. The combination of prior space- and ground-based photometry and spectroscopic observations in concert with a spectral model-independent mass makes this target an ideal benchmark for calibrating evolutionary models with known mass-age-luminosity degeneracies. A template-matching analysis on the NIRSpec/IFU data (F290LP,G395H; $\lambda \in$ [2.87-5.27] $\mu$m) detects the companion at the expected orbital position with incredible significance (265.2$\sigma$). Comprehensive spectral analysis including published datasets over a variety of different spectral model families reveal that an inference using a uniform radius prior is plagued by inaccurate posteriors. The atmospheric model degeneracy between metallicity, gravity, and clouds pull the inferred mass/gravity/radius to an unphysical portion of parameter space for all model families tested. A constrained inference with a gaussian prior on the mass can mitigate this issue but models without clouds still struggle to accurately reproduce the K-band photometry and result in mass inferences which are inconsistent with the dynamics. We explore modifying the spectral models with custom post-processed clouds and molecular abundance perturbations of ammonia and hydrogen sulfide. We find the best-fitting model includes clouds with no patchiness (hole fraction f$_\mathrm{hole}$ = 0), a small fractional depletion in ammonia and moderate enhancement in hydrogen sulfide.
NO MESMO MAPA