Context. The Rosetta spacecraft provided us with a unique opportunity to study comet 67P / Churyumov-Gerasimenko from a close perspective and over a two-year time period. Comet 67P is a weakly active comet. It was therefore unexpected to find an active and dynamic ionosphere where the cometary ions were largely dominant over the solar wind ions, even at large heliocentric distances. Aims. Our goal is to understand the di ff erent drivers of the cometary ionosphere and assess their variability over time and over the di ff erent conditions encountered by the comet during the Rosetta mission. Methods. We used a multi-instrument data-based ionospheric model to compute the total ion number density at the position of Rosetta. In-situ measurements...
A comet ionospheric model assuming the plasma moves radially outward with the same bulk speed as the...
International audienceAn ionospheric model has been developed in order to quantify the ion number de...
Context. The Rosetta spacecraft escorted comet 67P/Churyumov-Gerasimenko from 2014 to September 2016...
Context. The Rosetta spacecraft provided us with a unique opportunity to study comet 67P/Churyumov–G...
We propose to identify the main sources of ionization of the plasma in the coma of comet 67P/Churyum...
The Rosetta spacecraft is the first spacecraft to ever escort a comet. It provided us with a unique ...
International audienceThe Rosetta spacecraft escorted comet 67P from August 2014 to September 2016. ...
We study the evolution of a cometary ionosphere, using approximately two years of plasma measurement...
The plasma environment has been measured for the first time near the surface of a comet. This uniqu...
Context. The Giotto and Rosetta missions gave us the unique opportunity of probing the close environ...
The environment of a comet is a fascinating and unique laboratory to study plasma processes and the ...
We study the evolution of the plasma environment of comet 67P using measurements of the spacecraft p...
A comet ionospheric model assuming the plasma moves radially outward with the same bulk speed as the...
International audienceAn ionospheric model has been developed in order to quantify the ion number de...
Context. The Rosetta spacecraft escorted comet 67P/Churyumov-Gerasimenko from 2014 to September 2016...
Context. The Rosetta spacecraft provided us with a unique opportunity to study comet 67P/Churyumov–G...
We propose to identify the main sources of ionization of the plasma in the coma of comet 67P/Churyum...
The Rosetta spacecraft is the first spacecraft to ever escort a comet. It provided us with a unique ...
International audienceThe Rosetta spacecraft escorted comet 67P from August 2014 to September 2016. ...
We study the evolution of a cometary ionosphere, using approximately two years of plasma measurement...
The plasma environment has been measured for the first time near the surface of a comet. This uniqu...
Context. The Giotto and Rosetta missions gave us the unique opportunity of probing the close environ...
The environment of a comet is a fascinating and unique laboratory to study plasma processes and the ...
We study the evolution of the plasma environment of comet 67P using measurements of the spacecraft p...
A comet ionospheric model assuming the plasma moves radially outward with the same bulk speed as the...
International audienceAn ionospheric model has been developed in order to quantify the ion number de...
Context. The Rosetta spacecraft escorted comet 67P/Churyumov-Gerasimenko from 2014 to September 2016...