Published September 1986 | Version v1
Journal article

Noble gases from solar energetic particles revealed by closed system stepwise etching of lunar soil minerals

  • 1. Eidgenoessische Technische Hochschule, Zurich (Switzerland). Inst. fuer Kristallographie und Petrographie

Description

He, Ne, and Ar abundances and isotopic ratios in plagioclase and pyroxene separates from lunar soils were determined using a closed system stepwise etching technique. This method of noble gas release allows one to separate solar wind (SW) noble gases from those implanted as solar energetic particles (SEP). SEP-Ne with 20Ne/22Ne = 11.3 +- 0.3 is present in all samples studied. The abundances of SEP-Ne are 2-4 orders of magnitude too high to be explained exclusively as implanted solar flare gas. The major part of SEP-Ne possibly originates from solar 'suprathermal ions' with energies < 0.1 MeV/amu. The isotopic composition of Ne in these lower energy SEP is, however, probably identical to that of real flare Ne. The suggestion that SEP-Ne might have the same isotopic composition as planetary Ne and thus possibly represent an unfractionated sample of solar Ne is not tenable. SW-Ne retained in plagioclase and pyroxene is less fractionated than has been deduced by total fusion analyses. Ne-B is a mixture of SW-Ne and SEP-Ne rather than fractionated SW-Ne. In contrast to SEP-Ne, SEP-Ar has probably a very similar composition as SW-Ar. (author)

Additional details

Publishing Information

Journal Title
Geochim. Cosmochim. Acta
Journal Volume
50
Journal Issue
9
Series
Geochim. Cosmochim. Acta.
Journal Page Range
1997-2017
ISSN
0016-7037
CODEN
GCACA