English

Weather on Other Worlds. V. The Three Most Rapidly Rotating Ultra-Cool Dwarfs

Solar and Stellar Astrophysics 2021-04-28 v2

Abstract

We present the discovery of rapid photometric variability in three ultra-cool dwarfs from long-duration monitoring with the Spitzer Space Telescope. The T7, L3.5, and L8 dwarfs have the shortest photometric periods known to date: 1.0800.005+0.004{1.080}^{+0.004}_{-0.005} h, 1.140.01+0.03{1.14}^{+0.03}_{-0.01} h, and 1.230.01+0.01{1.23}^{+0.01}_{-0.01} h, respectively. We confirm the rapid rotation through moderate-resolution infrared spectroscopy, which reveals projected rotational velocities between 79 and 104 km s1^{-1}. We compare the near-infrared spectra to photospheric models to determine the objects' fundamental parameters and radial velocities. We find that the equatorial rotational velocities for all three objects are \gtrsim100 km s1^{-1}. The three L and T dwarfs reported here are the most rapidly spinning and likely the most oblate field ultra-cool dwarfs known to date. Correspondingly, all three are excellent candidates for seeking auroral radio emission and net optical/infrared polarization. As of this writing, 78 L-, T-, and Y-dwarf rotation periods have now been measured. The clustering of the shortest rotation periods near 1 h suggests that brown dwarfs are unlikely to spin much faster.

Keywords

Cite

@article{arxiv.2103.01990,
  title  = {Weather on Other Worlds. V. The Three Most Rapidly Rotating Ultra-Cool Dwarfs},
  author = {Megan E. Tannock and Stanimir Metchev and Aren Heinze and Paulo A. Miles-Páez and Jonathan Gagné and Adam Burgasser and Mark S. Marley and Dániel Apai and Genaro Suárez and Peter Plavchan},
  journal= {arXiv preprint arXiv:2103.01990},
  year   = {2021}
}

Comments

35 pages, 13 figures, 6 tables, accepted for publication in the Astronomical Journal, typos corrected in updated version