首页> 外文期刊>Journal of structural geology >Spatial distribution of zircon with shock microtwins in pseudotachylite-bearing granite gneisses, Vredefort impact structure, South Africa
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Spatial distribution of zircon with shock microtwins in pseudotachylite-bearing granite gneisses, Vredefort impact structure, South Africa

机译:含假水闪石的花岗岩片麻岩中含冲击微孪晶的锆石的空间分布,Vredefort撞击结构,南非

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Mechanical microtwins in zircon is a characteristic shock feature and a potential tool for estimating shock pressure and/or shear stress. However, so far, zircon with microtwins has rarely been described in situ. The present study of pseudotachylite-bearing granitic gneisses from the Vredefort impact structure focuses on the spatial distribution of zircon with microtwins and other deformation features.Zircon hosted by granitic gneiss does not reveal extensive shock deformation. With decreasing distance to pseudotachylite, zircon progressively develops (sub)planar fractures, planar deformation bands, low-angle boundaries, rarely thin {112} microtwin lamellae and, closest to the vein, it is fragmented. In contrast, zircon hosted by pseudotachylites contains thick and closely-spaced microtwin lamellae, which form up to three sets within individual grains. Microtwin lamellae are associated with planar {112} low-angle boundaries, and with overprinting crystal-plastic and brittle deformation. We suggest that planar {112} low-angle boundaries in zircon are indicative of shock deformation; and that microtwins in zircon within pseudotachylite veins are an indicator of the impact origin for the latter, as opposed to endogenic, seismically-induced friction melts. Locally-elevated shock pressure and shear stress induce the formation of pseudotachylites in the target rock as well as shock microtwins in zircon.
机译:锆石中的机械微孪晶是一种独特的冲击特征,也是估计冲击压力和/或剪切应力的潜在工具。然而,到目前为止,很少有原位描述具有微孪晶的锆石。目前对Vredefort冲击构造的含假速闪石的花岗岩片麻岩的研究主要集中在具有微孪晶和其他变形特征的锆石的空间分布上。随着到假速闪石的距离减小,锆石逐渐发展成(亚)平面裂缝,平面形变带,低角度边界,极薄的{112}微孪晶片,并且最接近静脉的地方被破碎。相比之下,由假速滑石寄主的锆石含有厚且间隔紧密的微孪晶片,它们在单个晶粒内最多形成三组。微孪晶片与平面{112}低角度边界相关,并与叠印的晶体塑性和脆性变形有关。我们建议锆石中的平面{112}低角度边界指示冲击变形。伪速晶石脉中锆石中的微孪晶是后者冲击源的指标,与内生的,地震诱发的摩擦熔体相反。局部升高的冲击压力和剪切应力会在目标岩石中形成假速滑石以及在锆石中形成冲击微孪晶。

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