The chemistry, sedimentology, and geology of the Meridiani sedimentary deposits are best explained by eolian reworking of the sublimation residue of a large scale ice/dust deposit. This large ice deposit was located in close proximity to Terra Meridiani and incorporated large amounts of dust, sand, and SO2 aerosols generated by impacts and volcanism during early martian history. Sulfate formation and chemical weathering of the initial igneous material is hypothesized to have occurred inside of the ice when the darker mineral grains were heated by solar radiant energy. This created conditions in which small films of liquid water were created in and around the mineral grains. This water dissolved the SO2 and reacted with the mineral grains fo...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
We present the Messinian evaporite suite (Mediterranean region) and the Solfatara hydrothermal syste...
Candor Mensa, an interior layered deposit (ILD) in Valles Marineris, Mars, consists of two stratigr...
Although a number of hypotheses have been put forward to explain the sulphate deposits discovered by...
Sedimentary rocks exposed in the Meridiani Planum region of Mars record aqueous and eolian depositio...
Since the first photogeologic exploration of Mars, vast mounds of layered sediments found within the...
Important sulfate deposits have been discovered in various equatorial regions of Mars : the canyons ...
The Mars Exploration Rover Opportunity discovered sulphate-rich sedimentary rocks at Meridiani Planu...
Sedimentary rocks at Eagle crater in Meridiani Planum are composed of fine-grained siliciclastic mat...
Important sulfate deposits have been detected in some equatorial regions of Mars : in the canyons of...
Sulfate-dominated sedimentary deposits are widespread on the surface of Mars, which contrasts with t...
We interpret recent spectral data of Mars collected by the Mars Exploration Rovers to contain substa...
A unique aspect of martian geology is the presence of similar compositional stratigraphy observed in...
Understanding the origin of the Hesperian-aged sulfate-bearing Equatorial Layered Deposits (ELDs) is...
A distinctive sulfur cycle dominates many geological processes on Mars and hydrated sulfate minerals...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
We present the Messinian evaporite suite (Mediterranean region) and the Solfatara hydrothermal syste...
Candor Mensa, an interior layered deposit (ILD) in Valles Marineris, Mars, consists of two stratigr...
Although a number of hypotheses have been put forward to explain the sulphate deposits discovered by...
Sedimentary rocks exposed in the Meridiani Planum region of Mars record aqueous and eolian depositio...
Since the first photogeologic exploration of Mars, vast mounds of layered sediments found within the...
Important sulfate deposits have been discovered in various equatorial regions of Mars : the canyons ...
The Mars Exploration Rover Opportunity discovered sulphate-rich sedimentary rocks at Meridiani Planu...
Sedimentary rocks at Eagle crater in Meridiani Planum are composed of fine-grained siliciclastic mat...
Important sulfate deposits have been detected in some equatorial regions of Mars : in the canyons of...
Sulfate-dominated sedimentary deposits are widespread on the surface of Mars, which contrasts with t...
We interpret recent spectral data of Mars collected by the Mars Exploration Rovers to contain substa...
A unique aspect of martian geology is the presence of similar compositional stratigraphy observed in...
Understanding the origin of the Hesperian-aged sulfate-bearing Equatorial Layered Deposits (ELDs) is...
A distinctive sulfur cycle dominates many geological processes on Mars and hydrated sulfate minerals...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
We present the Messinian evaporite suite (Mediterranean region) and the Solfatara hydrothermal syste...
Candor Mensa, an interior layered deposit (ILD) in Valles Marineris, Mars, consists of two stratigr...