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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >The Northwest Africa 8159 martian meteorite: Expanding the martian sample suite to the early Amazonian
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The Northwest Africa 8159 martian meteorite: Expanding the martian sample suite to the early Amazonian

机译:西北非洲8159火星陨石:将火星样本套件扩展到早期的亚马逊

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Northwest Africa (NWA) 8159 is an augite-rich shergottite, with a mineralogy dominated by Ca-, Fe-rich pyroxene, plagioclase, olivine, and magnetite. NWA 8159 crystallized from an evolved melt of basaltic composition under relatively rapid conditions of cooling, likely in a surface lava flow or shallow sill. Redox conditions experienced by the melt shifted from relatively oxidizing (with respect to known Martian lithologies, similar to QFM) on the liquidus to higher oxygen fugacity (similar to QFM + 2) during crystallization of the groundmass, and under subsolidus conditions. This shift resulted in the production of orthopyroxene and magnetite replacing olivine phenocryst rims. NWA 8159 contains both crystalline and shock-amorphized plagioclase (An(5062)), often observed within a single grain; based on known calibrations we bracket the peak shock pressure experienced by NWA 8159 to between 15 and 23 GPa. The bulk composition of NWA 8159 is depleted in LREE, as observed for Tissint and other depleted shergottites; however, NWA 8159 is distinct from all other martian lithologies in its bulk composition and oxygen fugacity. We obtain a Sm-Nd formation age of 2.37 +/- 0.25 Ga for NWA 8159, which represents an interval in Mars geologic time which, until recently, was not represented in the other martian meteorite types. The bulk rock Sm-147/Nd-144 value of 0.37 +/- 0.02 is consistent with it being derived directly from its source and the high initial epsilon(143)(Nd) value indicates this source was geochemically highly depleted. Cr, Nd, and W isotopic compositions further support a unique mantle source. While the rock shares similarities with the 2.4-Ga NWA 7635 meteorite, there are notable distinctions between the two meteorites that suggest differences in mantle source compositions and conditions of crystallization. Nevertheless, the two samples may be launch-paired. NWA 8159 expands the known basalt types, ages and mantle sources within the Mars sample suite to includ
机译:西北非洲(NWA)8159是一款富含富硫代的Shergottites,矿物学由Ca-,Fe富石,Plagioclase,Olivine和Magnetite主导。 NWA 8159在相对快速的冷却条件下从玄武岩组合物的进化熔体中结晶,可能在表面熔岩流或浅窗台。熔体经历的氧化还原条件从液体结晶期间与液相高于液体的相对氧化(相对于已知的火星岩岩,类似于QFM),并在血液结晶期间和在子瘤条件下。这种转变导致替代橄榄石苯杂交边缘的矫肌和磁铁矿的生产。 NWA 8159含有结晶和冲击 - 无晶型Plagioclase(An(5062)),通常在单粒内观察到;基于已知的校准,我们将NWA 8159至15至23GPa之间经历的峰值冲击压力支架。如梭菌和其他耗尽的Shergottites所观察到的,NWA 8159的块状组成耗尽;然而,NWA 8159与其散装成分和氧气不足之处不同于所有其他火星岩性。我们获得了NWA 8159的SM-ND形成年龄为2.37 +/- 0.25 Ga,这代表了火星地质时间的间隔,直到最近,在其他火星陨石类型中没有代表。散装岩石SM-147 / ND-144值为0.37 +/- 0.02是一致的,它直接从其来源衍生,高初始ε(143)(ND)值表明该来源是地球化学上高度耗尽的。 Cr,Nd和W同位素组合物进一步支持独特的地幔源。虽然岩石与2.4-GA NWA 7635陨石共享相似性,但两种陨石之间存在显着的区别,表明披风源组合物和结晶条件的差异。然而,两个样本可以发射配对。 NWA 8159扩展了MARS样品套件内的已知玄武岩类型,年龄和地幔源,以包括在内

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