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~(39)Ar-~(40)Ar ages and thermal history of mesosiderites

机译:〜(39)Ar-〜(40)Ar年龄和中铁菱铁矿的热历史

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摘要

Determinations of ~(39)Ar-~(40)Ar ages for plagioclase separates of three clasts from the Vaca Muerta and Mount Padbury mesosiderites give similar results. Ages increase monotonically by ~0.2-0.3 Ga when plotted against increasing ~(39)Ar release from the samples and give average values of ~3.95 Ga. When combined with revised ages for mesosiderite analyses previously reported, nineteen analyses of thirteen mesosiderites give an average Ar-Ar age of 3.94 ± 0.10 Ga. The average age at 90% ~(39)Ar release is 4.13 ±0.14 Ga, and the ages at 10% ~(39)Ar release range over 3.32-3.97 Ga. It seems unlikely that the ~(39)Ar-~(40)Ar ages were produced by direct impact heating, but they probably are independent evidence for slow cooling deep within the mesosiderite parent body. We conclude that the sloped age plateaus and the significant range in Ar-Ar closure temperatures calculated for these mesosiderites (~75-340 ℃) are due to significant differences in Ar diffusion properties among samples. From the Ar diffusion data, we estimate an approximate mesosiderite cooling rate of ~0.2 ℃/Ma, which is similar to the preferred cooling rate of 0.1-0.5 ℃/Ma derived by others from Ni diffusion and metal textures. The ~(39)AR/~(40)Ar ages seem incompatible with very slow cooling rates of <0.2 ℃/Ma, unless the closure temperatures for Ar diffusion and formation of metal cooling textures on the parent body substantially overlap. Any possible role of fragmentation of the mesosiderite parent body in producing the younger Ar-Ar ages and the very slow cooling rates is unclear.
机译:测定Vaca Muerta和Mount Padbury的中铁菱铁矿中的三种碎屑的斜长石分离物的〜(39)Ar-〜(40)Ar年龄,得出的结果相似。当针对样品中〜(39)Ar释放的增加作图时,年龄单调增加了〜0.2-0.3 Ga,得出的平均值为〜3.95 Ga。结合先前报道的中速菱铁矿分析的修订年龄,对十三种中速菱铁矿的19次分析给出了平均值Ar-Ar年龄为3.94±0.10Ga。90%〜(39)Ar释放时的平均年龄为4.13±0.14 Ga,10%〜(39)Ar释放时的年龄为3.32-3.97 Ga。似乎不太可能〜(39)Ar-〜(40)Ar年龄是通过直接冲击加热产生的,但它们可能是中速菱铁矿母体内部缓慢冷却的独立证据。我们得出的结论是,这些中观菱铁矿的倾斜年龄高原和Ar-Ar封闭温度的显着范围(〜75-340℃)是由于样品之间Ar扩散特性的显着差异所致。从Ar扩散数据中,我们估计约有0.2℃/ Ma的中速菱铁矿冷却速率,与其他由Ni扩散和金属织构得出的优选的0.1-0.5℃/ Ma冷却速率相似。 〜(39)AR /〜(40)Ar年龄似乎与<0.2℃/ Ma的非常慢的冷却速率不相容,除非Ar扩散的封闭温度和在母体上形成金属冷却织构的闭合温度基本重叠。目前尚不清楚中铁菱铁矿母体的碎裂在产生较年轻的Ar-Ar年龄和非常缓慢的冷却速率中可能发挥的作用。

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