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Kinematic, Deformational, and Thermochronologic Conditions Along the Gossan Lead and Fries Shear Zones: Constraining the Western-Eastern Blue Ridge Boundary in Northwestern North Carolina

机译:沿戈桑铅和薯条剪切带的运动学,变形和热年代学条件:约束北卡罗来纳州西北部的东西蓝海脊边界

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摘要

The fault boundary between the western and eastern Blue Ridge (WBR-EBR) in the southern Appalachians separates Mesoproterozoic basement rocks and their cover from Neoproterozoic to Paleozoic accreted rocks. Several northeast striking faults delineate the boundary, including the Gossan Lead shear zone in northwestern North Carolina. Varying tectonic interpretations of WBR-EBR boundary include a premetamorphic fault, an Acadian dextral strike-slip fault, or an Alleghanian fault. We use field-based, microstructural, and theromochronometric analyses to determine the conditions, kinematics, and timing of deformation, in order to distinguish among competing hypotheses for the Gossan Lead shear zone. This comprehensive approach has allowed us to attribute a number of new and previously observed tectonic fabrics to specific orogenic events; key relationships necessary to the study of multiply deformed tectonic margins. Detailed mapping and microstructural analysis of the Gossan Lead shear zone document a several kilometer-wide mylonitic zone with kinematic indicators that record dominantly top-to-the-NW thrust motion, with local strike-slip and normal sense indicators. Dynamically recrystallized quartz and feldspar constrain a range of deformation conditions from amphibolite to greenschist facies. Two unaltered lineation-forming amphiboles from mylonitic amphibolites record Ar-40/Ar-39 cooling ages of 347-345 Ma, and a mylonitized metagraywacke records a muscovite Ar-40/Ar-39 cooling age of 336 Ma. These data are consistent with dominantly NW directed thrusting along the Gossan Lead shear zone at amphibolite to greenschist facies conditions, and rapid cooling in the Middle Mississippian. We suggest these data support overprinting and/or reactivation of an earlier structure along this complexly deformed boundary by 336 Ma.
机译:阿巴拉契亚山脉南部和东部蓝脊(WBR-EBR)之间的断层边界将中元古代基岩及其覆盖物从新元古代到古生代岩分离。东北划定了几个断裂带,包括北卡罗来纳州西北部的戈桑铅剪切带。 WBR-EBR边界的各种构造解释包括变质前断层,阿卡迪斯右旋走滑断层或Alleghanian断层。我们使用基于场的,微观结构的和热计时的分析来确定变形的条件,运动学和时机,以区分Gossan Lead剪切带的竞争假设。这种综合的方法使我们能够将许多新的和先前观察到的构造构造归因于特定的造山事件。研究多重变形构造边缘的关键关系。 Gossan Lead剪切带的详细测绘和微观结构分析记录了几公里宽的回旋带,其运动学指标主要记录了从上到下的西北推力运动,并带有局部走滑和法向感测指标。动态重结晶的石英和长石限制了从闪石到绿片岩相的一系列变形条件。两种来自线粒体闪石的未改变线形成的两性闪石记录的Ar-40 / Ar-39冷却年龄为347-345 Ma,而一种变白的metagraywacke记录了白云母Ar-40 / Ar-39冷却年龄为336 Ma。这些数据与沿西北角Gossan Lead剪切带的角闪石岩向绿片岩相环境以及西北密西西比中的快速冷却相一致。我们建议这些数据支持沿此复杂变形边界336 Ma覆盖和/或重新激活早期结构。

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