Distances, Luminosities, and Temperatures of the Coldest Known Substellar Objects
Abstract
The coolest known brown dwarfs are our best analogs to extrasolar gas-giant planets. The prolific detections of such cold substellar objects in the past two years has spurred intensive followup, but the lack of accurate distances is a key gap in our understanding. We present a large sample of precise distances based on homogeneous mid-infrared astrometry that robustly establish absolute fluxes, luminosities, and temperatures. The coolest brown dwarfs have temperatures of 400-450 K and masses ~5-20 times that of Jupiter, showing they bridge the gap between hotter brown dwarfs and gas-giant planets. At these extremes, spectral energy distributions no longer follow a simple correspondence with temperature, suggesting an increasing role of other physical parameters such as surface gravity, vertical mixing, clouds, and metallicity.
Keywords
Cite
@article{arxiv.1309.1422,
title = {Distances, Luminosities, and Temperatures of the Coldest Known Substellar Objects},
author = {Trent J. Dupuy and Adam L. Kraus},
journal= {arXiv preprint arXiv:1309.1422},
year = {2015}
}
Comments
Accepted to Science, appears in Science Express. These parallax results will soon be added to the Database of Ultracool Parallaxes: https://www.cfa.harvard.edu/~tdupuy/plx/