We used the Imaging Ultraviolet Spectrograph (IUVS) aboard the Mars Atmosphere and Volatile EvolutioN (MAVEN) orbiting spacecraft to construct images of the hydrogen coma of comet C/2013 A1 (Siding Spring) days before its close encounter with Mars. We obtain a water production rate of 1.1 ± 0.5 × 1028 molecules/s and determine the total impacting fluence of atoms and molecules corresponding to the photodissociation of water and its daughter species to be 2.4 ± 1.2 × 104 kg. We use these observations to confirm predictions that the mass of delivered hydrogen is comparable to the existing reservoir above 150 km. Furthermore, we reconcile disparity between observations and predictions about the detectability of the hydrogen perturbation and th...
During the 1985-1986 apparition of Comet P/Halley, the International Ultraviolet Explorer (IUE) sate...
International audienceWe report here the observations of the hydrogen cloud in Lyman alpha emission ...
We obtained high-resolution (lambda divided by delta times lambda equals approximately 25,000) pre-p...
International audienceWe used the Imaging Ultraviolet Spectrograph (IUVS) aboard the Mars Atmosphere...
International audienceThe close approach of comet C/2013 A1 (Siding Spring) to Mars in 2014 October ...
International audienceThe all-sky hydrogen Lyman-alpha camera, SWAN (Solar Wind Anisotropies), on th...
International audienceThe all-sky hydrogen Lyman-alpha camera, SWAN (Solar Wind ANisotropies), on th...
International audienceThe Solar Wind ANisotropies (SWAN) all-sky hydrogen Lyα camera on the SOlar an...
International audienceThe all-sky hydrogen Lyman-alpha camera, SWAN (Solar Wind Anisotropies), on th...
International audienceThe all-sky hydrogen Lyman-alpha camera, SWAN (Solar Wind Anisotropies), on th...
Context. Outgassing from cometary nuclei involves complex surface and subsurface processes...
International audienceThe all-sky hydrogen Lyman-alpha camera, SWAN (Solar Wind Anisotropies), on th...
Context. Outgassing from cometary nuclei involves complex surface and subsurface processes that need...
We observed the interstellar comet 2I/Borisov using the Neil Gehrels Swift Observatory's Ultraviolet...
During the 1985-1986 apparition of Comet P/Halley, the International Ultraviolet Explorer (IUE) sate...
International audienceWe report here the observations of the hydrogen cloud in Lyman alpha emission ...
We obtained high-resolution (lambda divided by delta times lambda equals approximately 25,000) pre-p...
International audienceWe used the Imaging Ultraviolet Spectrograph (IUVS) aboard the Mars Atmosphere...
International audienceThe close approach of comet C/2013 A1 (Siding Spring) to Mars in 2014 October ...
International audienceThe all-sky hydrogen Lyman-alpha camera, SWAN (Solar Wind Anisotropies), on th...
International audienceThe all-sky hydrogen Lyman-alpha camera, SWAN (Solar Wind ANisotropies), on th...
International audienceThe Solar Wind ANisotropies (SWAN) all-sky hydrogen Lyα camera on the SOlar an...
International audienceThe all-sky hydrogen Lyman-alpha camera, SWAN (Solar Wind Anisotropies), on th...
International audienceThe all-sky hydrogen Lyman-alpha camera, SWAN (Solar Wind Anisotropies), on th...
Context. Outgassing from cometary nuclei involves complex surface and subsurface processes...
International audienceThe all-sky hydrogen Lyman-alpha camera, SWAN (Solar Wind Anisotropies), on th...
Context. Outgassing from cometary nuclei involves complex surface and subsurface processes that need...
We observed the interstellar comet 2I/Borisov using the Neil Gehrels Swift Observatory's Ultraviolet...
During the 1985-1986 apparition of Comet P/Halley, the International Ultraviolet Explorer (IUE) sate...
International audienceWe report here the observations of the hydrogen cloud in Lyman alpha emission ...
We obtained high-resolution (lambda divided by delta times lambda equals approximately 25,000) pre-p...