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Shocked and thermally metamorphosed zircon form the Vredefort impact structure, South Africa: a transmission electron microscopic study

机译:震惊和热变质的锆石形成了Vredefort撞击结构,南非:透射电子显微镜研究

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transmission electron microscopic (TEM) analysis of zircon crystals from a migmatitic pelitiec granulite from the central part of the Vredefort Dome, the central uplift of the ca. 250-300 km diameter Vredefort impact structure in south Africa, reveals a nanometer- to micrometer-scale subplanar lamellar structure that is attributed to high-pressure (>15 GPa) shock deformation during a 2.02 Ga mega-impact event. Two types of subplanar structures have been identified: (a) dislocation bands and (b) nm-scale lamellar features. The dislocation bands could represent the optically discernable planar features that have been described in naturally shocked zircon from a number of impact structures and Cretaceous/Tertiary boundary deposits. However, whether their nature is similar to that of planar deformation features (PDFs) known from other rock-forming minerals or whether they represent a form of shock-induced planar fracturing could not be determined. annealing of these bands and localized formation of subgrains is consistent with the slow decay of shock heat from rocks beneath the very large (250-300 km diameter) Vredefort impact crater. The question of whether the nm-scale lamellar features represent an equivalent of the nm-scale PDFs identified previously in zirocon could not be resolved. Following the shock event, amorphization (metamictization) has destroyed the zircon crystal structure in places.
机译:透射电镜(TEM)分析来自Vredefort Dome中央部分的一个古老的pelitiec粒状锆石中的锆石晶体。在南非,直径250-300 km的Vredefort冲击结构揭示了纳米至微米级的次平面层状结构,该结构是由于2.02 Ga巨型冲击事件期间的高压(> 15 GPa)冲击变形而引起的。已经确定了两种类型的亚平面结构:(a)位错带和(b)纳米尺度的层状特征。位错带可以代表光学上可辨别的平面特征,这些特征已在自然撞击的锆石中由许多撞击结构和白垩纪/第三纪边界沉积物描述。但是,无法确定其性质是否与其他成岩矿物已知的平面变形特征(PDF)相似,或者它们是否代表了冲击诱发的平面破裂形式。这些带的退火和亚晶粒的局部形成与超大(直径250-300 km)Vredefort撞击坑下面的岩石产生的冲击热的缓慢衰减是一致的。纳米级片状特征是否代表以前在zirocon中识别出的纳米级PDF的问题无法解决。冲击事件发生后,非晶化(金属化)破坏了锆石晶体结构。

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