首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Exploring the Ar isotope record of an early Miocene pseudotachylyte in an early Oligocene intrusion (Rieserferner pluton, eastern Alps)
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Exploring the Ar isotope record of an early Miocene pseudotachylyte in an early Oligocene intrusion (Rieserferner pluton, eastern Alps)

机译:在早期的少细胞入侵中探索早期中肾上腺素假凋亡的AR同位素记录(Rieserferner Pluton,东阿尔卑斯山)

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摘要

We investigate the influence of unmelted clasts on the( 40)Ar-Ar-39 age record of a Miocene pseudotachylyte within the early Oligocene Riesenferner pluton (eastern Alps). This case study is ideal to investigate the effect of inherited Ar retained in survivor clasts because, although seismic faulting was only slightly younger (<20 Ma) than the igneous source rock, the pseudotachylyte includes layers with significant variations in K content, of either dominant plagioclase and biotite microlites or dominant submicrometric muscovite matrix. Numerical modeling, assuming pure diffusive loss and a short-lived thermal pulse due to frictional heating, indicates that unmelted plagioclase clasts represent the most critical issue in interpreting Ar data. Plagioclase clasts of only a few to tens micrometers in size are expected to retain most of radiogenic Ar accumulated before coseismic faulting. A comparable behavior is only predicted for much larger (ten to fifty times larger) K-feldspar clasts. In-situ Ar-40-Ar-39 laser analyses of low-K microlitic domains, free of discernable clasts, yield slightly, but significantly, older ages than those from the high-K matrix. Results suggest that older ages (up to similar to 4% on average) from low-K domains are due to contamination by plagioclase clasts and suggest an age of 17.12 +/- 0.22 Ma for coseismic slip. This age dates the last stage of activity of the Giudicarie Fault during tectonic indentation of the Dolomites block of the southern Alps against the nappe stack of the eastern Alps. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们研究了未经兴奋性植物早期寡替政策利因植物芦苇(东阿尔卑斯山)内海茂伪沉积物的(40)AR-AR-39年龄记录的影响。本案例研究是探讨遗传性含量保留在幸存流体中的遗传率的理想选择,因为虽然抗震源岩体略微较小(<20mA),但是假辐射晶体包括k含量显着变化的层,其中任一致性Plagioclase和Biotite MicroLite或显性潜疹Muscovite矩阵。假设纯扩散损失和由于摩擦加热引起的短暂的热脉冲的数值模拟表明,未熔化的Plagioclase Clast代表了解释AR数据中最关键的问题。预期仅几十微米的蛋白酶含量仅为少量微米,以保留在皮塞故障前累积的大部分辐射性AR。只有相当的行为仅预测到更大的(较大的十到五十次)K-Feldspar Clasts。原位AR-40-AR-39激光分析低k微旋弹结构域,没有可辨别的含水,略微屈服,但显着,比来自高k基质的较大的龄。结果表明,来自低K域的年龄(高达相似的4%)是由于Plagioclase Clast的污染,并且用于电影床滑动的年龄为17.12 +/- 0.22 mA。这个年龄是在南阿尔卑斯南部的南部堆积堆的南部堆积堆的南部的南部堆积的情况下,沟壑失败的最后阶段。 (c)2019年Elsevier B.V.保留所有权利。

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