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Retrieving past geodynamic events by unlocking rock archives with μ-XRF and μ-spectroscopy

机译:通过用μ-XRF和μ光谱解锁Rock Archive来检索过去的地磁事件

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Rocks are commonly polycrystalline systems presenting multi-scale chemical and structural heterogeneities inherited from crystallization processes or successive metamorphic events.This work illustrates how spatially resolved analytical techniques coupled with thermodynamic approaches allow rock compositional variations to be related to large-scale geodynamic processes.Emphasis is placed on the contribution of quantitative chemical imaging to the study of 2.2-2.0 Gy old metamorphic rocks from the West African Craton.A thorough analysis of elemental chemical maps acquired on rock thin sections enabled high pressure relic minerals to be located and re-analyzed later with precise point analyses.The pressure-temperature conditions of crystallization calculated from these analyses are typical of modern subduction zones.These results push back the onset of modern-style plate tectonics to 2.15 Gy, i.e.more than one billion years earlier than was consensually accepted.The second part of the paper describes the imaging capabilities offered by the new ultra-bright diffraction limited synchrotron sources.Experimental data acquired with the Maia detector at beamline P06 at Petra III as well as simulations of μ-XRF spectra that will be generated at the SRX beamline at NSLS-II are presented.These results demonstrate that cm~2 large chemical maps can be acquired with submicron spatial resolution and a precision suitable for thermobarometric estimates, with dwell time smaller than 1 millisecond.The last part of the paper discusses the relevance of utilizing recent X-ray fluorescence nanoprobes for diagenetic to low grade metamorphism applications.
机译:岩石是呈现从结晶过程或连续变质事件继承的多尺度化学和结构异质性的多晶系统。本工作说明了如何与热力学方法耦合的空间分辨的分析技术允许岩石组成变化与大规模地球动力学过程有关。emphasis是从西非CRATON贡献到2.2-2.0 Gy旧变质岩石的研究。彻底分析了岩石薄膜中获得的元素化学图,使高压遗物矿物待定位并在后面重新分析具有精确点分析。从这些分析计算的结晶的压力温度条件是现代俯冲区域的典型。这些结果将现代风格的板块构造的爆发推向2.15 GY,IEMORE比持续接受的十亿多年。PAP的第二部分ER描述了新型超明衍射有限公司Synchrotron源所提供的成像功能。在PETRA III的BeaCline P06处用Maia探测器获得的实验数据,以及将在NSL的SRX梁线上产生的μ-XRF光谱的模拟。 II。结果表明,CM〜2大型化学图可以用亚微米空间分辨率获得,适用于热磁化物测量估计的精度,停留时间小于1毫秒。论文的最后一部分讨论了近期X的相关性 - 射线荧光纳米素用于低级变质应用的成岩。

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