陨石的 14C 和 14C-10Be 地球年龄测定系统--四块新近坠落陨石的新数据

Mohammad Tauseef, Ingo Leya, J. Gattacceca, Beda Hofmann, Sönke Szidat, Régis Braucher
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摘要

我们对陨石陆地年龄的 14C 和 14C-10Be 测定系统进行了系统而详细的研究。物理模型计算表明,无论是 14C 生成率还是 14C/10Be 生成率比值都不够恒定,不能合理地用平均值来近似。如果使用简单的平均值,就会给陨石陆地年龄数据库带来很大的尺寸偏差。通过将模拟的 14C 生成率和 14C/10Be 生成率比值与 (22Ne/21Ne)cos 比值相结合,并假设约 80% 的烧蚀损失,建立了相对易于使用的 14C 生成率和 14C/10Be 生成率比值与 (22Ne/21Ne)cos 的函数关系。利用新的相关关系可以确定陆地年龄,这比仅仅根据 14C 和/或 14C/10Be 的平均值确定年龄更加准确。我们通过测量最近坠落的四块陨石中的 14C 活性浓度、14C/10Be 生成率比率、21Necos 浓度和 (22Ne/21Ne)cos 比率来验证模型的预测:Tazerzait山、Boumdeid(2011年)、Bensour和SaU 606。实验数据证实了模型的预测,尽管现有数据还不足以得出结论。需要更多来自新陨落陨石的数据来验证模型对不同大小和类型陨石的预测。
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14C and 14C‐10Be terrestrial age dating system for meteorites—New data for four recently fallen meteorites
We perform a systematic and detailed study of the 14C and 14C‐10Be dating systems for meteorite terrestrial ages. Physical model calculations indicate that neither the 14C production rates nor the 14C/10Be production rate ratios are constant enough to be reasonably approximated by average values. By using simple averages, one introduces a significant size‐dependent bias into the database for meteorite terrestrial ages. By combining modeled 14C production rates and 14C/10Be production rate ratios with (22Ne/21Ne)cos ratios and assuming ~80% ablation losses, relatively easy to use correlations of 14C production rates and 14C/10Be production rate ratios as a function of (22Ne/21Ne)cos are established. The new correlations enable the determination of terrestrial ages that are more accurate than ages based solely on average values for 14C and/or 14C/10Be. We validate the model predictions by measuring 14C activity concentrations, 14C/10Be production rate ratios, 21Necos concentrations, and (22Ne/21Ne)cos ratios in four recently fallen meteorites: Mt. Tazerzait, Boumdeid (2011), Bensour, and SaU 606. The experimental data confirmed the model predictions, although the available data are insufficient to be conclusive. More data from freshly fallen meteorites are needed for validating the model predictions for different chondrite sizes and chondrite types.
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