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SIGNATURES OF THE MARTIAN ATMOSPHERE IN GLASS OF THE ZAGAMI METEORITE

机译:ZAGAMI陨石玻璃中的Martin大气特征

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摘要

Isotopic signatures of nitrogen, argon, and xenon have been determined in separated millimeter-sized pockets of shock-melted glass in a recently identified lithology of the meteorite Zagami, a shergottite. The ratio of nitrogen-15 to nitrogen-14, which is at least 282 per mil larger than the terrestrial value, the ratio of xenon-129 to xenon-132 = 2.40, and the argon isotopic abundances match the signatures previously observed in the glassy lithology of the Antarctic shergottite EETA 79001. These results show that the signatures in EETA 79001 are not unique but characterize the trapped gas component in shock-melted glass of shergottites. The isotopic and elemental ratios of nitrogen, argon, and xenon closely resemble the Viking spacecraft data for the martian atmosphere and provide compelling evidence for a martian origin of the two shergottites and, by extension, of the meteorites in the shergottites-nakhlites-chassignites (SNC) group.
机译:氮,氩和氙的同位素特征已在最近确定的陨石Zagami(一种斜方晶石)的岩性中,在几个毫米大小的减震玻璃的独立袋中确定。氮15与氮14的比率至少比陆地值大282 / mil,氙129与氙132的比率= 2.40,且氩同位素丰度与先前在玻璃状中观察到的特征相符。南极白云母EETA 79001的岩性。这些结果表明,EETA 79001中的特征不是唯一的,而是表征了在冲击熔融的白云母玻璃中的捕获气体成分。氮,氩和氙的同位素和元素比与火星大气层的维京号航天器数据非常相似,并提供了令人信服的证据,证明了这两个斜方锰矿的火星起源,以及由此延伸出的斜方锰矿-纳赫石-斜辉石中的陨石( SNC)组。

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