English

C/2016 R2 (PANSTARRS): A comet rich in CO and depleted in HCN

Earth and Planetary Astrophysics 2018-07-18 v1

Abstract

We observed comet C/2016 R2 (PANSTARRS) with the ARO 10-m SMT, and report the first detection of CO emission from this comet with amounts high enough to be the primary driver of activity. We obtained spectra and maps of the CO J=2-1 rotational line at 230 GHz between 2017 December and 2018 January. We calculated an average production rate of Q(CO)=(4.6+/-0.4)x1028^{28} mol s1^{-1} at r ~2.9 au and delta ~2.1 au. The CO line is thin FWHM ~ 0.8 km s1^{-1} with a slight blue-shift ~ -0.1 km s1^{-1} from the ephemeris velocity, and we derive a gas expansion velocity of Vexp_{exp} = 0.50+/-0.15 km s1^{-1}. This comet produced approximately half the CO that comet C/1995 O1 (Hale-Bopp) did at 3 au. If CO production scales with nucleus surface area, then the radius need not exceed ~15 km. The spectra and mapping data are consistent with CO arising from a combination of a sunward-side active area and an isotropic source. For HCN, we calculated a 3-sigma upper limit production rate of Q(HCN) < 8x1024^{24} molecules s1^{-1}, which corresponds to an extraordinarily high abundance ratio limit of Q(CO)/Q(HCN) > 5000. We inferred a production rate of molecular nitrogen of Q(N2_2) ~2.8x1027^{27} molecules s1^{-1} using our CO data and the reported N2_2/CO column density ratio (Cochran & MacKay 2018a,b). The comet does not show the typical nitrogen depletion seen in comets, and the CO-rich, N2_2-rich and HCN-depleted values are consistent with formation in a cold environment of T < 50 K that may have provided significant N2_2 shielding.

Keywords

Cite

@article{arxiv.1805.06918,
  title  = {C/2016 R2 (PANSTARRS): A comet rich in CO and depleted in HCN},
  author = {Kacper Wierzchos and Maria Womack},
  journal= {arXiv preprint arXiv:1805.06918},
  year   = {2018}
}

Comments

14 pages, 2 figures, 2 tables. Accepted for publication in The Astronomical Jorunal