Cometary dust provides a unique window on dust growth mechanisms duringthe onset of planet formation. Measurements by the Rosetta spacecraftshow that the dust in the coma of comet 67P/Churyumov-Gerasimenko has agranular structure at size scales from sub-μmup to several hundredsof μm, indicating hierarchical growth took place across these sizescales. However, these dust particles may have been modified duringtheir collection by the spacecraft instruments. Here, we present theresults of laboratory experiments that simulate the impact of dust onthe collection surfaces of the COSIMA (Cometary Secondary Ion MassAnaylzer) and MIDAS (Micro-Imaging Dust Analysis System) instrumentsonboard the Rosetta spacecraft. We map the size and structure of the...
On 12 November 2014, during the descent of the Rosetta lander Philae to the surface of comet 67P/Chu...
In a Rosetta/OSIRIS imaging activity in 2015 June, we have observed the dynamic motion of particles ...
International audienceThe Rosetta orbiter carried three dedicated dust analysis instruments to inves...
The structure of cometary dust is a tracer of growth processes in the formation of planetesimals. In...
The structure of cometary dust is a tracer of growth processes in the formation of planetesimals. In...
Context. The COmetary Secondary Ion Mass Analyzer (COSIMA) on board Rosetta is dedicated t...
Context. The MIDAS (Micro-Imaging Dust Analysis System) atomic force microscope on board the Rosetta...
Soon after the arrival of the ROSETTA spacecraft at Comet 67/P Churyumov-Gerasimenko the onboard ins...
International audienceThe investigation of comet 67P by Rosetta has allowed the comprehensive charac...
Context. Cometary dust particles are remnants of the primordial accretion of refractory material tha...
The cometary tray of the NASA Stardust spacecraft’s aerogel collector was examined to study the dust...
On 12 November 2014, during the descent of the Rosetta lander Philae to the surface of comet 67P/Chu...
In a Rosetta/OSIRIS imaging activity in 2015 June, we have observed the dynamic motion of particles ...
International audienceThe Rosetta orbiter carried three dedicated dust analysis instruments to inves...
The structure of cometary dust is a tracer of growth processes in the formation of planetesimals. In...
The structure of cometary dust is a tracer of growth processes in the formation of planetesimals. In...
Context. The COmetary Secondary Ion Mass Analyzer (COSIMA) on board Rosetta is dedicated t...
Context. The MIDAS (Micro-Imaging Dust Analysis System) atomic force microscope on board the Rosetta...
Soon after the arrival of the ROSETTA spacecraft at Comet 67/P Churyumov-Gerasimenko the onboard ins...
International audienceThe investigation of comet 67P by Rosetta has allowed the comprehensive charac...
Context. Cometary dust particles are remnants of the primordial accretion of refractory material tha...
The cometary tray of the NASA Stardust spacecraft’s aerogel collector was examined to study the dust...
On 12 November 2014, during the descent of the Rosetta lander Philae to the surface of comet 67P/Chu...
In a Rosetta/OSIRIS imaging activity in 2015 June, we have observed the dynamic motion of particles ...
International audienceThe Rosetta orbiter carried three dedicated dust analysis instruments to inves...