English

Discovery of a brown dwarf with quasi-spherical mass-loss

Solar and Stellar Astrophysics 2022-10-26 v1 Earth and Planetary Astrophysics Astrophysics of Galaxies

Abstract

We report the serendipitous discovery of an elliptical shell of CO associated with the faint stellar object SSTc2d J163134.1-24006 as part of the "Ophiuchus Disk Survey Employing ALMA" (ODISEA), a project aiming to study the entire population of protoplanetary disks in the Ophiuchus Molecular Cloud from 230 GHz continuum emission and 12^{12}CO (J=2-1), 13^{13}CO (J=2-1) and C18^{18}CO (J=2-1) lines readable in Band-6. Remarkably, we detect a bright 12^{12}CO elliptical shape emission of \sim 3"^{"} ×\times 4"^{"} towards SSTc2d J163134.1-24006 without a 230 GHz continuum detection. Based on the observed near-IR spectrum taken with the Very Large Telescope (KMOS), the brightness of the source, its 3-dimensional motion, and Galactic dynamic arguments, we conclude that the source is not a giant star in the distant background (>>5 - 10 kpc) and is most likely to be a young brown dwarf in the Ophiuchus cloud, at a distance of just \sim139 pc. This is the first report of quasi-spherical mass loss in a young brown dwarf. We suggest that the observed shell could be associated with a thermal pulse produced by the fusion of deuterium, which is not yet well understood, but for a sub-stellar object is expected to occur during a short period of time at an age of a few Myr, in agreement with the ages of the objects in the region. Other more exotic scenarios, such as a merger with planetary companions, cannot be ruled out from the current observations.

Cite

@article{arxiv.2209.00759,
  title  = {Discovery of a brown dwarf with quasi-spherical mass-loss},
  author = {Dary A. Ruíz-Rodríguez and Lucas A. Cieza and Simon Casassus and Victor Almendros-Abad and Paula Jofré and Koraljka Muzic and Karla Peña Ramirez and Grace Batalla-Falcon and Michael M. Dunham and Camilo González-Ruilova and Antonio Hales and Elizabeth Humphreys and Pedro H. Nogueira and Claudia Paladini and John Tobin and Jonathan P. Williams and Alice Zurlo},
  journal= {arXiv preprint arXiv:2209.00759},
  year   = {2022}
}

Comments

27 pages, 20 Figures. Accepted ApJ