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Isotopic Composition of Trapped and Cosmogenic Noble Gases in Several Martian Meteorites

机译:几种火星陨石中被困和宇宙形成的稀有气体的同位素组成

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摘要

Isotopic abundances of the noble gases were measured in the following Martian meteorites: two shock glass inclusions from EET79001, shock vein glass from Shergotty and Y793605, and whole rock samples of ALH84001 and QUE94201. These glass samples, when combined with literature data on a separate single glass inclusion from EET79001 and a glass vein from Zagami, permit examination of the isotopic composition of Ne, Ar, Kr, and Xe trapped from the Martian atmosphere in greater detail. The isotopic composition of Martian Ne, if actually present in these glasses, remains poorly defined. The Ar-40/Ar-36 ratio of Martian atmospheric Ar may be much less than the ratio measured by Viking and possibly as low as approx. 1900. The atmospheric Ar-36/Ar-38 ratio is less than or equal to 4.0. Martian atmospheric Kr appears to be enriched in lighter isotopes by approx. 0.4%/amu compared to both solar wind Kr and to the Martian composition previously reported. The Martian atmospheric Ar-36/Xe-132 and Kr-84/Xe-132 Xe elemental ratios are higher than those reported by Viking by factors of approx. 3.3 and approx. 2.5, respectively. Cosmogenic gases indicate space exposure ages of 13.9 +/- 1 Myr for ALH84001 and 2.7 +/- 0.6 Myr for QUE94201. Small amounts of Ne-21 produced by energetic solar protons may be present in QUE94201, but are not present in ALH84001 or Y793605. The space exposure age for Y793605 is 4.9 +/- 0.6 Myr and appears to be distinctly older than the ages for basaltic shergottites.
机译:在以下火星陨石中测量了惰性气体的同位素丰度:来自EET79001的两个冲击玻璃夹杂物,来自Shergotty和Y793605的冲击脉玻璃以及整个岩石样品ALH84001和QUE94201。这些玻璃样品与来自EET79001的单独单一玻璃夹杂物和Zagami的玻璃脉的文献数据结合后,可以更详细地检查从火星大气中捕获的Ne,Ar,Kr和Xe的同位素组成。如果这些玻璃中确实存在火星Ne的同位素组成,则其定义仍然不明确。火星大气中Ar的Ar-40 / Ar-36比率可能远小于Viking测得的比率,并且可能低至大约20%。 1900年。大气Ar-36 / Ar-38之比小于或等于4.0。火星大气中的Kr似乎比轻同位素富集了大约20%。与太阳风Kr和先前报道的火星组成相比,为0.4%/ amu。火星大气中Ar-36 / Xe-132和Kr-84 / Xe-132 Xe的元素比要比维京人报道的高出约20倍。 3.3以上2.5。宇宙气体表明,ALH84001的空间暴露年龄为13.9 +/- 1 Myr,QUE94201的空间暴露年龄为2.7 +/- 0.6 Myr。高能太阳能质子产生的少量Ne-21可能存在于QUE94201中,但不存在于ALH84001或Y793605中。 Y793605的空间暴露年龄为4.9 +/- 0.6 Myr,并且似乎比玄武岩玄武岩的年龄明显长。

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