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Thermal history of Northwest Africa 5073––A coarse‐grained Stannern‐trend eucrite containing cm‐sized pyroxenes and large zircon grains
Authors:Julia ROSZJAR  Knut METZLER  Addi BISCHOFF  Jean‐Alix BARRAT  Thorsten GEISLER  Richard C. GREENWOOD  Ian A. FRANCHI  Stephan KLEMME
Affiliation:1. Institut für Planetologie, Westf?lische Wilhelms‐Universit?t Münster, Wilhelm‐Klemm‐Str. 10, D‐48149 Münster, Germany;2. Université Européenne de Bretagne, Institut Universitaire Européen de la Mer, Place Nicolas Copernic, 29280 Plouzané Dedex, France;3. Steinmann Institut, Rheinische Friedrich‐Wilhelms‐Universit?t Bonn, Poppelsdorfer Schlo?, 53115 Bonn, Germany;4. Planetary and Space Sciences Research Institute, The Open University, Milton Keynes MK7 6AA, UK;5. Institut für Mineralogie, Westf?lische Wilhelms‐Universit?t Münster, Corrensstr. 24, D‐48149 Münster, Germany
Abstract:Abstract– We report on the bulk chemical composition, petrology, oxygen isotopic composition, trace element composition of silicates, and degree of self‐irradiation damage on zircon grains of the eucrite Northwest Africa (NWA) 5073 to constrain its formation and postcrystallization thermal history, and to discuss their implications for the geologic history of its parent body. This unequilibrated and unbrecciated meteorite is a new member of the rare Stannern‐trend eucrites. It is mainly composed of elongated, zoned pyroxene phenocrysts up to 1.2 cm, plagioclase laths up to 0.3 cm in length, and is rich in mesostasis. The latter contains zircon grains up to 30 μm in diameter, metal, sulfide, tridymite, and Ca‐phosphates. Textural observations and silicate compositions, coupled with the occurrence of extraordinary Fe‐rich olivine veins that are restricted to large pyroxene laths, indicate that NWA 5073 underwent a complex thermal history. This is also supported by the annealed state of zircon grains inferred from μ‐Raman spectroscopic measurements along with U and Th data obtained by electron probe microanalyses.
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