English

New Horizons Constraints on Charon's Present Day Atmosphere

Earth and Planetary Astrophysics 2017-03-08 v1

Abstract

We report on a variety of standard techniques used by New Horizons including a solar ultraviolet occultation, ultraviolet airglow observations, and high-phase look-back particulate search imaging to search for an atmosphere around Pluto's large moon Charon during its flyby in July 2015. Analyzing these datasets, no evidence for a present day atmosphere has been found for 14 potential atomic and molecular species, all of which are now constrained to have pressures below 0.3 nanobar, as we describe below, these are much more stringent upper limits than the previously available 15-110 nanobar constraints (e.g., Sicardy et al. 2006); for example, we find a 3σ\sigma upper limit for an N2_2 atmosphere on Charon is 4.2 picobars and a 3σ\sigma upper limit for the brightness of any atmospheric haze on Charon of I/F=2.6x105^{-5}. A radio occultation search for an atmosphere around Charon was also conducted by New Horizons but will be published separately by other authors.

Keywords

Cite

@article{arxiv.1608.06955,
  title  = {New Horizons Constraints on Charon's Present Day Atmosphere},
  author = {S. A. Stern and J. A. Kammer and G. R. Gladstone and A. J. Steffl and A. F. Cheng and L. A. Young and H. A. Weaver and C. B. Olkin and K. Ennico and J. W. Parker and A. H. Parker and T. R. Lauer and A. Zangari and M. Summers and the New Horizons Atmospheres Team},
  journal= {arXiv preprint arXiv:1608.06955},
  year   = {2017}
}

Comments

17 pages, 7 figures. Submitted to Icarus, in revision