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Oxygen isotopic composition of an enstatite ribbon of probable cometary origin.

Authors :
Ogliore, Ryan C.
Brownlee, Donald E.
Nagashima, Kazuhide
Joswiak, David J.
Lewis, Josiah B.
Krot, Alexander N.
Utt, Kainen L.
Huss, Gary R.
Source :
Meteoritics & Planetary Science. Jun2020, Vol. 55 Issue 6, p1371-1381. 11p.
Publication Year :
2020

Abstract

Filamentary enstatite crystals are found in interplanetary dust particles (IDPs) of likely cometary origin but are very rare or absent in meteorites. Crystallographic characteristics of filamentary enstatites indicate that they condensed directly from vapor. We measured the O isotopic composition of an enstatite ribbon from a giant cluster IDP to be δ18O = 25 ± 55, δ17O = −19 ± 129, ∆17O = −32 ± 134 (2σ errors), which is inconsistent at the 2σ level with the composition of the Sun inferred from the Genesis solar wind measurements. The particle's O isotopic composition, consistent with the terrestrial composition, implies that it condensed from a gas of nonsolar O isotopic composition, possibly as a result of vaporization of disk region enriched in 16O‐depleted solids. The relative scarcity of filamentary enstatite in asteroids compared to comets implies either that this crystal condensed from dust vaporized in situ in the outer solar system where comets formed or it condensed in the inner solar system and was subsequently transported outward to the comet‐forming region. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10869379
Volume :
55
Issue :
6
Database :
Academic Search Index
Journal :
Meteoritics & Planetary Science
Publication Type :
Academic Journal
Accession number :
145202038
Full Text :
https://doi.org/10.1111/maps.13364