Workshop Overview:
In the first workshop of the “Methane on Mars” study program, we identified the search for environments possessing redox gradients (the fundamental energy source for life) as a guiding scientific goal for Mars exploration in the 2020’s. The detections of methane are tantalizing due to its reducing nature in an extremely oxidizing environment. Moreover, its observed variabilities indicate the existence of significant processes beyond our current understanding. Many decades of intensive research and exploration have yielded a detailed and comprehensive understanding of homogeneous (i.e. gas phase only) processes in the Martian atmosphere. Hence, the missing knowledge likely lies in heterogeneous, surface, and/or subsurface processes. We also know that Mars’ atmosphere and surface conditions/mineralogy are predominantly oxidizing, and the subsurface is far more likely to harbor redox-gradient environments. Together, these conclusions point to the surface/near-surface as our present knowledge frontier on Mars, and advancing our understanding of the Martian subsurface as the grand scientific challenge.
Advancing our knowledge frontier deeper into Mars requires new measurement methodologies (based on well-established terrestrial methodologies in, e.g., hydrocarbon exploration, geobiology, and geochemistry) and enabling technological advancements. The second workshop (in June, 2016) will focus on defining such enabling measurement and technological concepts.
Team Leads
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Caltech
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Jet Propulsion Laboratory
-
USC
The study program schedule is available in .pdf here
- Sushil Atreya — University of Michigan
- Patrick Beckett — JPL/Caltech
- Jennifer Blank — NASA Ames Research Center – Blue Marble Space
- Pin Chen — JPL/Caltech
- John Eiler — Caltech Campus
- Giuseppe Etiope — Istituto Nazionale di Geofisica e Vulcanologia
- Greg Ferry — Pennsylvania State University
- Peter Gao — Caltech Campus
- Renyu Hu — JPL/Caltech
- Armin Kleinboehl — JPL/Caltech
- Ron Klusman — Colorado School of Mines
- Charles Miller — JPL/Caltech
- Michael Mischna — JPL/Caltech
- Mike Mumma — NASA Goddard Space Flight Center
- Kenneth Nealson — USC
- Dorothy Oehler — NASA-Johnson Space Center
- Mitchio Okumura — Caltech Campus
- Radu Popa — River Road Research
- Michael Russell — JPL/Caltech
- Linhan Shen — Caltech Campus
- Barbara Sherwood Lollar — University of Toronto
- Vlada Stamenkovic — Caltech Campus
- Alexis Templeton — University of Colorado Boulder
- Ann C. Vandaele — Royal Belgian Institute for Space Aeronomy
- Sébastien Viscardy — Royal Belgian Institute for Space Aeronomy
- Chris Webster — JPL/Caltech
- Michael Wong — Caltech Campus
- John Worden — JPL/Caltech
- Yuk Yung — Caltech Campush
Presentations
| Speaker | Affiliation | Presentation |
|---|---|---|
| Giuseppe Etiope | Istituto Nazionale di Geofisica e Vulcanologia | Gas Seepage Working Group Report Out (3.6 MB .pdf) |
| Ronald W. Klusman | Colorado School of Mines (Emeritus) | Gas Seepage on Earth: Experience with microseepage measurements, flux detection and indirect indicators (5.0 MB .pdf) |
| Mike Mumma | NASA Goddard Space Flight Center | The Science Driver: Active Release of Methane (51.6 MB .pdf) |
| Ann C. Vandaele | Royal Belgian Institute for Space Aeronomy | NOMAD and the Exploration of Habitability on Mars (4.26 MB .pdf) |
| Sebastien Viscardy | Royal Belgian Institute for Space Aeronomy | Atmospheric Distribution of Methane on Mars (1.6 MB .pdf) |
| Michael Wong | Caltech | Potential Scenarios (2.7 MB .pdf) |
| Yuk Yung et al. | Caltech | Dust and Heterogeneous Chemistry (1.5 MB .pdf) |
| Yuk Yung – Caltech Campus | Pin Chen – JPL/Caltech | Methane on Mars: In Search of Habitability (92 KB .pdf) |