English

Spectroscopic mapping of Io's surface with HST/STIS: SO$_2$ frost, sulfur allotropes, and large-scale compositional patterns

Earth and Planetary Astrophysics 2022-12-20 v1

Abstract

Io's intense volcanic activity results in one of the most colorful surfaces in the solar system. Ultraviolet and visible-wavelength observations of Io are critical to uncovering the chemistry behind its volcanic hues. Here, we present global, spatially resolved UV-visible spectra of Io from the Space Telescope Imaging Spectrograph on the Hubble Space Telescope (HST), which bridge the gap between previous highly resolved imagery and disk-integrated spectroscopy, to provide an unprecedented combination of spatial and spectral detail. We use this comprehensive dataset to investigate spectral endmembers, map observed spectral features associated with SO2_2 frost and other sulfur species, and explore possible compositions in the context of Io surface processes. In agreement with past observations, our results are consistent with extensive equatorial SO2_2 frost deposits that are stable over multi-decade timescales, widespread sulfur-rich plains surrounding the SO2_2 deposits, and the enrichment of Pele's pyroclastic ring and the high-latitude regions in metastable short-chain sulfur allotropes.

Keywords

Cite

@article{arxiv.2212.08783,
  title  = {Spectroscopic mapping of Io's surface with HST/STIS: SO$_2$ frost, sulfur allotropes, and large-scale compositional patterns},
  author = {Samantha K. Trumbo and M. Ryleigh Davis and Benjamin Cassese and Michael E. Brown},
  journal= {arXiv preprint arXiv:2212.08783},
  year   = {2022}
}

Comments

15 pages, 8 figures, published in PSJ