English

A Rotation Rate for the Planetary-Mass Companion DH Tau b

Earth and Planetary Astrophysics 2020-02-19 v1 Solar and Stellar Astrophysics

Abstract

DH Tau b is a young planetary-mass companion orbiting at a projected separation of 320 AU from its \sim2 Myr old host star DH Tau. With an estimated mass of 8228-22 MJupM_{\rm{Jup}} this object straddles the deuterium-burning limit, and might have formed via core or pebble accretion, disk instability, or molecular cloud fragmentation. To shed light on the formation history of DH Tau b, we obtain the first measurement of rotational line broadening for this object using high-resolution (R \sim25,000) near-infrared spectroscopy from Keck/NIRSPEC. We measure a projected rotational velocity (vvsinii) of 9.6±0.79.6\pm0.7 km/s, corresponding to a rotation rate that is between 9-15% of DH Tau b's predicted break-up speed. This low rotation rate is in good agreement with scenarios in which magnetic coupling between the companion and its circumplanetary disk during the late stages of accretion reduces angular momentum and regulates spin. We compare the rotation rate of DH Tau b to published values for other planetary-mass objects with masses between 0.3200.3-20 MJupM_{\rm{Jup}} and find no evidence of a correlation between mass and rotation rate in this mass regime. Finally, we search for evidence of individual molecules in DH Tau b's spectrum and find that it is dominated by CO and H2_2O, with no evidence for the presence of CH4_4. This agrees with expectations given DH Tau b's relatively high effective temperature (\sim2300 K).

Keywords

Cite

@article{arxiv.2001.01759,
  title  = {A Rotation Rate for the Planetary-Mass Companion DH Tau b},
  author = {Jerry W. Xuan and Marta L. Bryan and Heather A. Knutson and Brendan P. Bowler and Caroline V. Morley and Björn Benneke},
  journal= {arXiv preprint arXiv:2001.01759},
  year   = {2020}
}

Comments

Accepted to AJ