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Ar-39-Ar-40 geochronology of mono- and polymetamorphic basement rocks

机译:单变质和多变质基底岩石的Ar-39-Ar-40年代学

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摘要

The Ar-39-Ar-40 technique is often used to date the metamorphic evolution of basement rocks. The present review article examines systematic aspects of the K-Ar decay system in different mineral chronometers frequently found in mono- and polymetamorphic basements (amphibole, biotite, muscovite/phengite, K-feldspar). A key observation is that the measured dissolution rate of silicates in aqueous fluids is many orders of magnitude faster, and has a much lower activation energy, than the rate of Fickian diffusion of Ar. The effects of this inequality are patchy age zonations, very much like those observed in many U-Pb chronometers, unaccompanied by intra-crystalline bell-shaped Ar loss profiles. Recognizing the importance of the respective rates in field situations leads to re-evaluating the ages and the interpretive paradigms in classic examples such as the Central Alpine "Lepontine" amphibolite facies event and the Western Alpine eclogitic event.
机译:Ar-39-Ar-40技术通常用于确定基底岩石的变质演化年代。本篇综述文章探讨了在单变质和多变质地下室(闪石,黑云母,白云母/菲诺石,钾长石)中经常发现的不同矿物天文钟中K-Ar衰变系统的系统方面。关键的观察结果是,所测得的硅酸盐在水性流体中的溶解速率比Ar的Fickian扩散速率快许多数量级,并且活化能低得多。这种不平等的影响是年龄分布的不规则性,非常类似于在许多U-Pb天文钟表中观察到的那样,没有晶体内钟形Ar损耗曲线。认识到各自比率在野外情况下的重要性,可以重新评估诸如中部高山“ Lepontine”角闪岩相事件和西部高山地闪事件的经典例子中的年龄和解释范式。

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