2004 TT357: A potential contact binary in the Trans-Neptunian belt
Abstract
We report photometric observations of the trans-Neptunian object 2004~TT obtained in 2015 and 2017 using the 4.3~m Lowell's Discovery Channel Telescope. We derive a rotational period of 7.790.01~h and a peak-to-peak lightcurve amplitude of 0.760.03~mag. 2004 TT displays a large variability that can be explained by a very elongated single object or can be due to a contact/close binary. The most likely scenario is that 2004 TT is a contact binary. If it is in hydrostatic equilibrium, we find that the lightcurve can be explained by a system with a mass ratio q=0.450.05, and a density of =2g cm, or less likely a system with q=0.80.05, and =5g cm. Considering a single triaxial ellipsoid in hydrostatic equilibrium, we derive a lower limit to the density of 0.78g cm, and an elongation (a/b) of 2.01 assuming an equatorial view. From Hubble Space Telescope data, we report no resolved companion orbiting 2004 TT. Despite an expected high fraction of contact binaries in the trans-Neptunian belt, 2001 QG is the unique confirmed contact binary in the trans-Neptunian belt, and 2004 TT is only the second candidate to this class of systems, with 2003 SQ.
Keywords
Cite
@article{arxiv.1707.09927,
title = {2004 TT357: A potential contact binary in the Trans-Neptunian belt},
author = {Audrey Thirouin and Scott S. Sheppard and Keith S. Noll},
journal= {arXiv preprint arXiv:1707.09927},
year = {2017}
}
Comments
In Press, ApJ