High-resolution stepped heating has been used to extract light noble gases implanted in a suite of 13 individual lunar ilmenite and iron grains and in the Kapoeta howardite by solar wind (SW) and solar energetic particle (SEP) irradiation. Isotopic analyses of gases evolved at low temperatures from the lunar grains confirm the neon and argon compositions obtained by Pepin et al. (Pepin R. O., Becker R. H., and Schlutter D. J., “Irradiation records in regolith materials, I: Isotopic compositions of solar-wind neon and argon in single lunar regolith grains”, Geochim. Cosmochim. Acta63, 2145–2162, 1999) in an initial study of 11 regolith grains, primarily ilmenites. Combination of the data sets from both investigations yields 20Ne/22Ne = 13.85...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
The Ninth Symposium on Polar Science/Ordinary sessions: [OA] Antarctic meteorites / Hayabusa, Tue. 4...
We report new data from Pesyanoe-90,1 (dark lithology) on the isotopic signature of solar wind (SW) ...
The lunar meteorite Dhofar 1436 is dominated by solar wind type noble gases. Solar argon is equilibr...
Lunar soils have been thought to contain two solar noble gas components with distinct isotopic compo...
Solar He, Ne, and Ar in a Fe-Ni separate from the chondrite Fayetteville are analyzed by closed syst...
Earth's Moon is a repository of solar wind and can therefore provide information on the chemistry of...
We discuss data of light noble gases from the solar wind implanted into a metallic glass target flow...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
The Ninth Symposium on Polar Science/Ordinary sessions: [OA] Antarctic meteorites / Hayabusa, Tue. 4...
We report new data from Pesyanoe-90,1 (dark lithology) on the isotopic signature of solar wind (SW) ...
The lunar meteorite Dhofar 1436 is dominated by solar wind type noble gases. Solar argon is equilibr...
Lunar soils have been thought to contain two solar noble gas components with distinct isotopic compo...
Solar He, Ne, and Ar in a Fe-Ni separate from the chondrite Fayetteville are analyzed by closed syst...
Earth's Moon is a repository of solar wind and can therefore provide information on the chemistry of...
We discuss data of light noble gases from the solar wind implanted into a metallic glass target flow...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...
International audienceWe review the different scenarios for the origin of light noble gases (He, Ne,...