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U-Pb Dating of Zircons and Phosphates in Lunar Meteorites, Acapulcoites and Angrites

机译:月球陨石,阿卡波利岩和角砾岩中锆石和磷酸盐的U-pb定年

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Zircon U-Pb geochronology has made a great contribution to the timing of magmatism in the early Solar System (1-3). Ca phosphates are another group of common accessory minerals in meteorites with great potential for U-Pb geochronology. Compared to zircons, the lower closure temperatures of the U-Pb system for apatite and merrillite (the most common phosphates in achondrites) makes them susceptible to resetting during thermal metamorphism. The different closure temperatures of the U-Pb system for zircon and apatite provide us an opportunity to discover the evolutionary history of meteoritic parent bodies, such as the crystallization ages of magmatism, as well as later impact events and thermal metamorphism. We have developed techniques using the Cameca IMS-1280 ion microprobe to date both zircon and phosphate grains in meteorites. Here we report U-Pb dating results for zircons and phosphates from lunar meteorites Dhofar 1442 and SaU 169. To test and verify the reliability of the newly developed phosphate dating technique, two additional meteorites, Acapulco, obtained from Acapulco consortium, and angrite NWA 4590 were also selected for this study as both have precisely known phosphate U-Pb ages by TIMS (4,5). Both meteorites are from very fast cooled parent bodies with no sign of resetting (4,5), satisfying a necessity for precise dating.

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