Unlocking the Climate Record Stored within Mars' Polar Layered Deposits

August 8-11, 2017
California Institute of Technology - Pasadena, CA 91125

Workshop Overview:

The polar regions of
Mars host layered deposits (PLD;
ice sheets that together have a
volume similar to the Greenland icesheet
on Earth) that record climate
signals over millions of years of
accumulation. The signals stored in
the martian layers are caused by
variations in rates of ice and dust
accumulation and likely record
atmospheric variability and perhaps
volcanic events. To date, climate
models based on derived orbital
parameters have given us the most
insight into what happened in Mars’
recent past (going back ~20 Myr). However, detailed analyses of the PLD layers
would provide a unique opportunity to increase our understanding of the climate
history on Mars and test our climate models on a simplified terrestrial planet.

This study will establish a core group of researchers and technologists that
will be likely to propose a future mission to the Martian polar regions. The broad interdisciplinary
approach necessary for designing an ambitious climate investigation will bring
together a group with a diverse set of skills, and will be very inclusive of many
types of analytical and remote sensing techniques. We will also identify future opportunities to leverage existing facilities for the study of Mars ice analog samples, and testing hardware for
future missions.

Team Leads

The study program schedule is available in .pdf here

  • Don Banfield — Cornell University
  • Patricio Becerra — Universität Bern
  • Peter Buhler — Caltech
  • Shane Byrne — University of Arizona
  • Wendy Calvin — University of Nevada-Reno
  • Lynn Carter — University of Arizona
  • Lauren Edgar — U.S. Geological Survey
  • Bethany Ehlmann — Caltech and JPL
  • Jeremy Emmett — New Mexico State University
  • Jennifer Hanley — Lowell Observatory
  • Candy Hansen — Planetary Science Institute
  • Paul Hayne — JPL
  • Bryana Henderson — JPL
  • Briony Horgan — Purdue University
  • Christine S. Hvidberg — University of Copenhagen
  • Melinda Kahre — NASA-Ames Research Center
  • Armin Kleinboehl — JPL
  • Dan Lalich — University of Texas
  • Margaret Landis — University of Arizona
  • Sarah Milkovich — JPL
  • Thomas Navarro — UCLA
  • Rachel Obbard — Dartmouth College
  • David Paige — UCLA
  • Sergio Parra — Georgia Tech
  • Matthew Perry — Planetary Science Institute
  • Sylvain Piqueux — JPL
  • Than Putzig — Planetary Science Institute
  • Matt Siegler — Planetary Science Institute
  • Mark Skidmore — Montana State University
  • Isaac Smith — Planetary Science Institute
  • Nick Thomas — Universität Bern
  • Kris Zacny — Honeybee Robotics

Presentations

Speaker Affiliation Presentation
Patricio Becerra Universität Bern Polar Stratigraphy
(64.2 MB .pdf) (video)
Shane Byrne University of Arizona Mars’ Polar Caps and Present-Day Conditions
(14.2 MB .pdf) (video)
Christine Hvidberg Univ. of Copenhagen Terrestrial Ice Sheets in Climate Studies
(8 MB .pdf) (video)
Melinda Kahre NASA Ames Research Center Amazonian Climate Modeling
(10 MB .pdf) (video)
Patricio Becerra Universität Bern Where Oh Where Should We Go?
(14.9 MB .pdf)
Wendy Calvin University of Nevada-Reno Optical and Infrared Remote Sensing – From Orbit and In Situ
(23 MB .pdf)
Bethany Ehlmann Caltech/JPL Mars Dust/Soil
(4.3 MB .pdf) (1.2 MB .pdf)
Briony Horgan Purdue University Dust and Other Impurities in the NPLD
(13 MB .pdf)
Christine Hvidberg Univ. of Copenhagen Dating of Terrestrial Ice Cores
(939 KB .pdf)
Dan Lalich University of Texas What Causes Radar Reflections?
(16 MB .pdf)
Sarah Milkovich JPL/Caltech Cryobot Thermal Drills in the NPLD
(2 MB .pdf)
Rachel Obbard Dartmouth College Sampling and In-Situ Analysis
(22 MB .pdf)
David Paige UCLA Mars Firn Layers:
(9.37 MB .pdf) (62 MB .pdf)
Than Putzig Planetary Science Institute Remote-Sensing Approaches from Orbit and Surface: Radar and Seismic Methods
(34.4 MB .pdf)
Matt Siegler Planetary Science Institute Isotopic Measurements for the Mars Ice Cap
(3.6 MB .pdf)
Mark Skidmore Montana State University Debris Containing Glacial Ice: Greenland Basal Ice
(269 KB .pdf)
Isaac Smith Planetary Science Institute Reservoirs of H2O
(14.9 MB .pdf)
Kris Zacny Honeybee Robotics Drilling Into Mars PLD
(6.5 MB .pdf)
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