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Preferred orientation distribution of shock-induced planar microstructures in quartz and feldspar

机译:石英和长石的冲击诱导平面微观结构的优选取向分布

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Shocked quartz and feldspar grains commonly exhibit planar microstructures, such as planar fractures, planar deformation features, and possibly microtwins, which are considered to have formed by shock metamorphism. Their orientation and frequency are typically reported to be randomly distributed across a sample. The goal of this study is to investigate whether such microstructures are completely random within a given sample, or whether their orientation might also retain information on the direction of the local shock wave propagation. For this work, we selected samples of shatter cones, which were cut normal to the striated surface and the striation direction, from three impact structures (Keurusselka, Finland, and Charlevoix and Manicouagan, Canada). These samples show different stages of pre-impact tectonic deformation. Additionally, we investigated several shocked granite samples, selected at different depths along the drill core recovered during the joint IODP-ICDP Chicxulub Expedition 364 (Mexico). In this case, thin sections were cut along two orthogonal directions, one parallel and one normal to the drill core axis. All the results refer to optical microscopy and universal-stage analyses performed on petrographic thin sections. Our results show that such shock-related microstructures do have a preferred orientation, but also that relating their orientation with the possible shock wave propagation is quite challenging and potentially impossible. This is largely due to the lack of dedicated experiments to provide a key to interpret the observed preferred orientation and to the lack of information on postimpact orientation modifications, especially in the case of the drill core samples.
机译:震惊的石英和长石谷物通常表现出平面微观结构,例如平面裂缝,平面变形特征,以及可能的微管,其被认为是由冲击变质形成的。通常据报道它们的定向和频率通常被随机分布在样本上。本研究的目的是研究这种微观结构是否在给定的样本内完全随机,或者它们的方向是否也可以在局部冲击波传播的方向上保留信息。对于这项工作,我们选择了碎片锥体的样本,从三个冲击结构(Keurusselka,芬兰和Charlevoix和Manicouagan,Canada),将正常的碎片锥体和横纹方向切割。这些样品显示出不同阶段的预冲击构造变形。此外,我们研究了几种震动的花岗岩样品,在沿着钻石芯的不同深度选择,在联合IODP-ICDP Chicxulub探险队(墨西哥)中回收。在这种情况下,沿两个正交方向切割薄部分,一个平行,一个平行,一个正常到钻孔芯轴。所有结果都参考光学显微镜和在岩晶薄片上进行的普遍阶段分析。我们的研究结果表明,这种冲击相关的微观结构具有优选的方向,但也具有与可能的冲击波传播相关的定向是非常具有挑战性的并且可能是不可能的。这主要是由于缺乏专用实验来提供一个关键来解释观察所观察到的优选方向以及缺乏关于诊断定向修改的信息,特别是在钻孔核心样本的情况下。

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