English

On the surface composition of Triton's southern latitudes

Earth and Planetary Astrophysics 2016-01-27 v2

Abstract

We present the results of an investigation to determine the longitudinal (zonal) distributions and temporal evolution of ices on the surface of Triton. Between 2002 and 2014, we obtained 63 nights of near-infrared (0.67-2.55 μ\mum) spectra using the SpeX instrument at NASA's Infrared Telescope Facility (IRTF). Triton has spectral features in this wavelength region from N2_2, CO, CH4_4, CO2_2, and H2_2O. Absorption features of ethane (C2_2H6_6) and 13^{13}CO are coincident at 2.405 μ\mum, a feature that we detect in our spectra. We calculated the integrated band area (or fractional band depth in the case of H2_2O) in each nightly average spectrum, constructed longitudinal distributions, and quantified temporal evolution for each of the chosen absorption bands. The volatile ices (N2_2, CO, CH4_4) show significant variability over one Triton rotation and have well-constrained longitudes of peak absorption. The non-volatile ices (CO2_2, H2_2O) show poorly-constrained peak longitudes and little variability. The longitudinal distribution of the 2.405 μ\mum band shows little variability over one Triton rotation and is 97±\pm44^{\circ} and 92±\pm44^{\circ} out of phase with the 1.58 μ\mum and 2.35 μ\mum CO bands, respectively. This evidence indicates that the 2.405 μ\mum band is due to absorption from non-volatile ethane. CH4_4 absorption increased over the period of the observations while absorption from all other ices showed no statistically signifcant change. We conclude from these results that the southern latitudes of Triton are currently dominated by non-volatile ices and as the sub-solar latitude migrates northwards, a larger quantity of volatile ice is coming into view.

Keywords

Cite

@article{arxiv.1508.05924,
  title  = {On the surface composition of Triton's southern latitudes},
  author = {B. J. Holler and L. A. Young and W. M. Grundy and C. B. Olkin},
  journal= {arXiv preprint arXiv:1508.05924},
  year   = {2016}
}

Comments

34 pages, 16 figures, 4 tables, appendix