English

WASP-128b: a transiting brown dwarf in the dynamical-tide regime

Earth and Planetary Astrophysics 2018-09-26 v2 Solar and Stellar Astrophysics

Abstract

Massive companions in close orbits around G dwarfs are thought to undergo rapid orbital decay due to runaway tidal dissipation. We report here the discovery of WASP-128b, a brown dwarf discovered by the WASP survey transiting a G0V host on a 2.2d2.2\,\mathrm{d} orbit, where the measured stellar rotation rate places the companion in a regime where tidal interaction is dominated by dynamical tides. Under the assumption of dynamical equilibrium, we derive a value of the stellar tidal quality factor logQ=6.96±0.19\log{Q_\star'} = 6.96 \pm 0.19. A combined analysis of ground-based photometry and high-resolution spectroscopy reveals a mass and radius of the host, M=1.16±0.04MM_\star = 1.16 \pm 0.04\,M_\odot, R=1.16±0.02RR_\star = 1.16 \pm 0.02\,R_\odot, and for the companion, Mb=37.5±0.8MJupM_\mathrm{b} =37.5 \pm 0.8\,M_\mathrm{Jup}, Rb=0.94±0.02RJupR_\mathrm{b} = 0.94 \pm 0.02\,R_\mathrm{Jup}, placing WASP-128b in the driest parts of the brown dwarf desert, and suggesting a mild inflation for its age. We estimate a remaining lifetime for WASP-128b similar to that of some ultra-short period massive hot Jupiters, and note it may be a propitious candidate for measuring orbital decay and testing tidal theories.

Keywords

Cite

@article{arxiv.1807.07557,
  title  = {WASP-128b: a transiting brown dwarf in the dynamical-tide regime},
  author = {V. Hodžić and A. H. M. J. Triaud and D. R. Anderson and F. Bouchy and A. Collier Cameron and L. Delrez and M. Gillon and C. Hellier and E. Jehin and M. Lendl and P. F. L. Maxted and F. Pepe and D. Pollacco and D. Queloz and D. Ségransan and B. Smalley and S. Udry and R. West},
  journal= {arXiv preprint arXiv:1807.07557},
  year   = {2018}
}

Comments

7 pages, 3 figures. Accepted in MNRAS. Added references, fixed typos, and clarified some parts of the text

R2 v1 2026-06-23T03:07:48.052Z