首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Antarctic lunar meteorites Yamato-793169, Asuka-881757,MIL 05035, and MET 01210 (YAMM): Launch pairing and possible cryptomare origin
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Antarctic lunar meteorites Yamato-793169, Asuka-881757,MIL 05035, and MET 01210 (YAMM): Launch pairing and possible cryptomare origin

机译:南极月球陨石Yamato-793169,Asuka-881757,MIL 05035和MET 01210(YAMM):发射配对并可能存在密码母

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摘要

The Antarctic lunar meteorite Meteorite Hills (MET) 01210 is a polymict regolith breccia, dominantly composed of mare basalt components. One relatively large (2.7 4.7 mm) basalt clast in MET 01210 (MET basalt) shows remarkable mineralogical similarities to the lunar-meteorite crystalline mare basalts Yamato (Y)-793169, Asuka (A)-881757, and Miller Range (MIL) 05035. All four basalts have similar rock texture, mineral assemblage, mineral composition, pyroxene crystallization trend, and pyroxene exsolution lamellae. The estimated TiO2 contents (2.0 wt%) of the MET basalt and MIL 05035 are close to the bulk-rock TiO2 contents of Y-793169 and A-881757. These similarities suggest that Y-793169, A-881757, MIL 05035, and the MET basalt came from the same basalt flow, which we designate the YAMM basalt. The source-basalt pairing of the YAMM is also supported by their similar REE abundances, crystallization ages (approx. 3.8–3.9 Ga), and isotopic compositions (low U/Pb, low Rb/Sr, and high Sm/Nd). The pyroxene exsolution lamellae, which are unusually coarse (up to a few microns) by mare standards, imply a relatively slow cooling in an unusually thick lava and/or subsequent annealing within a cryptomare. Reported noble gas and CRE data with close launch ages (1 Ma) and ejection depths (deeper than several meters) among the four meteorites further indicate their simultaneous ejection from the moon. Despite the marginally close terrestrial ages, pairing in the conventional Earth-entry sense seems unlikely because of the remote recovery sites among the YAMM meteorites.
机译:南极月球陨石丘陵(MET)01210是一种由多聚体组成的角砾岩角砾岩,主要由母马玄武岩组成。 MET 01210(MET玄武岩)中一个相对较大(2.7 4.7毫米)的玄武岩碎屑与月陨陨石母岩玄武岩具有明显的矿物学相似性,大和(Y)-793169,明日香(A)-881757和米勒岭(MIL)05035 。所有四个玄武岩具有相似的岩石质地,矿物组成,矿物组成,辉石的结晶趋势和辉石的溶蚀薄片。 MET玄武岩和MIL 05035的估计TiO2含量(2.0重量%)接近Y-793169和A-881757的大块TiO2含量。这些相似之处表明,Y-793169,A-881757,MIL 05035和MET玄武岩来自同一玄武岩流,我们将其命名为YAMM玄武岩。 YAMM的源玄武岩配对也得到了它们相似的REE丰度,结晶年龄(约3.8–3.9 Ga)和同位素组成(低U / Pb,低Rb / Sr和高Sm / Nd)的支持。辉母岩析出的薄层,按母马标准,异常粗大(最多几微米),这意味着在异常浓密的熔岩中冷却相对缓慢,并且/或者随后在隐m内退火。报告的稀有气体和CRE数据具有接近的发射年龄(1 Ma)和四个陨石之间的喷射深度(比几米深),进一步表明它们同时从月球喷射出去。尽管地球年龄相差无几,但由于YAMM陨石之间的遥远恢复地点,传统的进入地球的配对似乎不太可能。

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