Observations of Disequilibrium CO Chemistry in the Coldest Brown Dwarfs
arXiv:2004.10770 · doi:10.3847/1538-3881/ab9114
Abstract
Cold brown dwarfs are excellent analogs of widely separated, gas giant exoplanets, and provide insight into the potential atmospheric chemistry and physics we may encounter in objects discovered by future direct imaging surveys. We present a low resolution R 300 -band spectroscopic sequence of seven brown dwarfs with effective temperatures between 750 K and 250 K along with Jupiter. These spectra reveal disequilibrium abundances of carbon monoxide (CO) produced by atmospheric quenching. We use the eddy diffusion coefficient (K) to estimate the strength of vertical mixing in each object. The K values of cooler gaseous objects are close to their theoretical maximum and warmer objects show weaker mixing, likely due to less efficient convective mixing in primarily radiative layers. The CO-derived K values imply that disequilibrium phosphine (PH) should be easily observable in all of the brown dwarfs, but none as yet show any evidence for PH absorption. We find that ammonia is relatively insensitive to atmospheric quenching at these effective temperatures. We are able to improve the fit to WISE 0855's -band spectrum by including both CO and water clouds in the atmospheric model.
Accepted to the Astronomical Journal. 24 Pages, 16 Figures, 4 Tables. take care
References in corpus (15)
- Methane, Carbon Monoxide, and Ammonia in Brown Dwarfs and Self-Luminous Giant Planets
- Ammonia as a tracer of chemical equilibrium in the T7.5 dwarf Gliese 570D
- Discovery of a ~250 K Brown Dwarf at 2 pc from the Sun
- Spitzer/IRAC Photometry of M, L, and T Dwarfs
- Water Clouds in Y Dwarfs and Exoplanets
- A new equation of state for dense hydrogen-helium mixtures
- Uniform Atmospheric Retrieval Analysis of Ultracool Dwarfs I: Characterizing Benchmarks, Gl570D and HD3651B
- Physical parameters of two very cool T dwarfs
- Hubble Space Telescope Spectroscopy of Brown Dwarfs Discovered with the Wide-field Infrared Survey Explorer
- Near-infrared photometry of Y dwarfs: low ammonia abundance and the onset of water clouds
- A Uniform Retrieval Analysis of Ultracool Dwarfs. III. Properties of Y-Dwarfs
- Indications of Water Clouds in the Coldest Known Brown Dwarf
- Photometric Monitoring of the Coldest Known Brown Dwarf with the Spitzer Space Telescope
- NEOWISE-R Observation of the Coolest Known Brown Dwarf
- Modeling synthetic spectra for transiting extrasolar giant planets: detectability of HS and PH with JWST