English

The First JWST Spectral Energy Distribution of a Y dwarf

Solar and Stellar Astrophysics 2023-07-18 v1 Earth and Planetary Astrophysics

Abstract

We present the first JWST spectral energy distribution of a Y dwarf. This spectral energy distribution of the Y0 dwarf WISE J035934.06-540154.6 consists of low-resolution (λ\lambda/Δλ\Delta\lambda \sim 100) spectroscopy from 1-12 μ\mum and three photometric points at 15, 18, and 21 μ\mum. The spectrum exhibits numerous fundamental, overtone, and combination rotational-vibrational bands of H2_2O, CH4_4, CO, CO2_2, and NH3_3, including the previously unidentified ν3\nu_3 band of NH3_3 at 3 μ\mum. Using a Rayleigh-Jeans tail to account for the flux emerging at wavelengths greater than 21 μ\mum, we measure a bolometric luminosity of 1.523±0.090×10201.523\pm0.090\times10^{20} W. We determine a semi-empirical effective temperature estimate of 46718+16467^{+16}_{-18} K using the bolometric luminosity and evolutionary models to estimate a radius. Finally, we compare the spectrum and photometry to a grid of atmospheric models and find reasonably good agreement with a model having TeffT_{\mathrm{eff}}=450 K, log gg=3.25 [cm s2^{-2}], [M/H]=0.3-0.3. However, the low surface gravity implies an extremely low mass of 1 MJupM_{\rm{Jup}} and a very young age of 20 Myr, the latter of which is inconsistent with simulations of volume-limited samples of cool brown dwarfs.

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Cite

@article{arxiv.2306.11807,
  title  = {The First JWST Spectral Energy Distribution of a Y dwarf},
  author = {Samuel Beiler and Michael Cushing and Davy Kirkpatrick and Adam Schneider and Sagnick Mukherjee and Mark Marley},
  journal= {arXiv preprint arXiv:2306.11807},
  year   = {2023}
}