Active aeolian systems are present across the martian surface, with active dune fields commonly found in depressions such as craters and valleys. There are many dune fields within the equatorial region of Mars, including Valles Marineris, but the effects of topography on wind regimes and consequently dune migration in Valles Marineris is poorly understood. We investigated both the ripple and dune migration in a dune field in Coprates Chasma using High Resolution Science Experiment Images (HiRISE) and Context Camera (CTX) images. Migration rates of dune brinks and ripples were measured over varying time scales, between Earth years 2007–2014. The dunes here are some of the tallest on Mars, with heights of up to 182 m. The dune brinks are migr...
International audienceDunes have similar morphologies on the Earth and Mars. The main differences be...
International audienceThefirst in situ investigation of an active dunefield on another planetary sur...
Imagery from several Martian orbiters was analyzed in an attempt to discern movement of Martian sand...
Active aeolian systems are present across the martian surface, with active dune fields commonly foun...
Active aeolian systems are present across the martian surface, with active dune fields commonly foun...
Large ripples form striking patterns on the slopes of martian sand dunes which can be mapped and tra...
Aeolian systems are active across much of the surface of Mars and quantifying the activity of bedfor...
Wind is one of the major drivers of geomorphic change on terrestrial bodies throughout our solar sys...
In recent years aeolian bedforms across the surface of Mars have been monitored, however, the bounda...
Change detection analyses of aeolian bedforms (dunes and ripples), using multitemporal images acquir...
Wind has been an enduring geologic agent throughout the history of Mars, but it is often unclear whe...
In this work, we perform an analysis of large dark dunes within Moreux Crater and Herschel Crater on...
Craters are the most prevalent basins and potential depo-centers of sediment on Mars. Within these c...
Wind on Mars is a significant agent of contemporary surface change, yet the absence of in situ meteo...
Our research focuses on the detailed study of the aeolian deposits within Moreux crater using multi-...
International audienceDunes have similar morphologies on the Earth and Mars. The main differences be...
International audienceThefirst in situ investigation of an active dunefield on another planetary sur...
Imagery from several Martian orbiters was analyzed in an attempt to discern movement of Martian sand...
Active aeolian systems are present across the martian surface, with active dune fields commonly foun...
Active aeolian systems are present across the martian surface, with active dune fields commonly foun...
Large ripples form striking patterns on the slopes of martian sand dunes which can be mapped and tra...
Aeolian systems are active across much of the surface of Mars and quantifying the activity of bedfor...
Wind is one of the major drivers of geomorphic change on terrestrial bodies throughout our solar sys...
In recent years aeolian bedforms across the surface of Mars have been monitored, however, the bounda...
Change detection analyses of aeolian bedforms (dunes and ripples), using multitemporal images acquir...
Wind has been an enduring geologic agent throughout the history of Mars, but it is often unclear whe...
In this work, we perform an analysis of large dark dunes within Moreux Crater and Herschel Crater on...
Craters are the most prevalent basins and potential depo-centers of sediment on Mars. Within these c...
Wind on Mars is a significant agent of contemporary surface change, yet the absence of in situ meteo...
Our research focuses on the detailed study of the aeolian deposits within Moreux crater using multi-...
International audienceDunes have similar morphologies on the Earth and Mars. The main differences be...
International audienceThefirst in situ investigation of an active dunefield on another planetary sur...
Imagery from several Martian orbiters was analyzed in an attempt to discern movement of Martian sand...