The Case for Ancient Hot Springs in Gusev Crater, Mars

Astrobiology. 2020 Apr;20(4):475-499. doi: 10.1089/ast.2019.2044. Epub 2019 Oct 17.

Abstract

The origin and age of opaline silica deposits discovered by the Spirit rover adjacent to the Home Plate feature in the Columbia Hills of Gusev crater remains debated, in part because of their proximity to sulfur-rich soils. Processes related to fumarolic activity and to hot springs and/or geysers are the leading candidates. Both processes are known to produce opaline silica on Earth, but with differences in composition, morphology, texture, and stratigraphy. Here, we incorporate new and existing observations of the Home Plate region with observations from field and laboratory work to address the competing hypotheses. The results, which include new evidence for a hot spring vent mound, demonstrate that a volcanic hydrothermal system manifesting both hot spring/geyser and fumarolic activity best explains the opaline silica rocks and proximal S-rich materials, respectively. The opaline silica rocks most likely are sinter deposits derived from hot spring activity. Stratigraphic evidence indicates that their deposition occurred before the emplacement of the volcaniclastic deposits comprising Home Plate and nearby ridges. Because sinter deposits throughout geologic history on Earth preserve evidence for microbial life, they are a key target in the search for ancient life on Mars.

Keywords: Astrobiology; Columbia Hills; Hot springs; Mars; Opaline silica; Sinter.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Chile
  • Earth, Planet
  • Extraterrestrial Environment
  • Geologic Sediments / chemistry
  • Hot Springs*
  • Mars*
  • Silicon Dioxide / analysis*
  • Spectrophotometry, Infrared
  • Sulfur
  • Utah
  • Volcanic Eruptions

Substances

  • opoka
  • Sulfur
  • Silicon Dioxide