首页> 外文期刊>Journal of structural geology >The Eidsfjord shear zone, Lofoten-Vesteralen, north Norway: An Early Devonian, paleoseismogenic low-angle normal fault
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The Eidsfjord shear zone, Lofoten-Vesteralen, north Norway: An Early Devonian, paleoseismogenic low-angle normal fault

机译:挪威北部Lofoten-Vesteralen的Eidsfjord剪切带:早泥盆世,古成因低角度正断层

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We report structural and Ar/ Ar isotopic information on the Eidsfjord shear zone that document it to be a seismogenic, tops-west (hinterland directed), Devonian ductile low angle (25-30° dip, shallowing locally) normal detachment fault Anorthosite/migmatitic gneiss in the detachment's upper plate, mangerite in the lower plate, and detachment mylonites are all cut by generations of abundant pseu-dotachylyte occurring over approximately 150 km~2. The mean of four laser (40)~Ar/(39)~Ar plateau ages for single crystals of recrystallized muscovite from mylonites defining the Eidsfjord shear zone indicates an age of 403.6 ± 1.1 Ma (2a) for deformation and recrystallization. (40)~Ar/(39)~Ar step-heating analyses are reported for muscovite from mylonitized rocks of the Fiskefjord shear zone, a nearby tops-east Caledonian thrust that was reactivated as a tops-west normal fault, documenting cooling of the upper plate through the ~350 ℃ isotherm at ~457 Ma. Together with Middle-Ordovician tectonothermal relics found farther west in Lofoten, tops-down-to-the-west normal-slip movement on these extensional shear zones explains maintenance of high-crustal levels throughout the Siluro-Devonian Scandian event Potassium feldspar (40)~Ar/(39)~Ar results document a pulse, or multiple pulses, of uplift and cooling between ca. 235 Ma and 185 Ma, consistent with formation of Triassic-Jurassic rift basins flanking the Lofoten Ridge.The Eidsfjord detachment appears to mark the northern terminus of the Early Devonian detachment system traceable 800 km southward to the Nordfjord-Sogn detachment and westward across the North Atlantic to detachments of roughly the same age on the conjugate side of the orogen in East Greenland. The timing, geometry, kinematics, and Theological development of Eidsfjord detachment are grossly similar to the Nordfjord-Sogn detachment but the former contrasts in that it presently lacks exposed deposits of Devonian sedimentary rocks, has smaller magnitudes of displacement, a more prolonged exhumation history, is severely chopped by later high angle normal faults related to rifting and final Eocene continental separation, and it has abundant pseudotachylite occurrences in the upper plate. We interpret the Eidsfjord detachment to be a rare example of an ancient eroded seismogenic low-angle normal fault.
机译:我们在Eidsfjord剪切带上报告了结构和Ar / Ar同位素信息,该信息记录为成地震,上西(腹地定向),泥盆系延性低角度(倾角25-30°,局部变浅)正分离断层上板块中的片麻岩,下板块中的菱铁矿和板块状的ites石均被约150 km〜2的世代丰富的假藻类藻酸盐切割。定义艾德斯峡湾剪切带的镍铁矿重结晶白云母单晶的四个激光(40)〜Ar /(39)〜Ar平台期的平均值表明,变形和再结晶的年龄为403.6±1.1 Ma(2a)。 (40)〜Ar /(39)〜Ar的阶梯加热分析报道了Fiskefjord剪切带的髓质化岩石中的白云母,附近是上东加里东冲断层,重新激活为上西正断层,记录了冷却上板穿过〜457℃的〜350℃等温线。再加上在罗弗敦西部更西端的中奥陶纪构造热遗迹,这些伸展剪切带上的自上而下的正滑运动解释了整个志留纪-德文统斯堪的纳维亚事件中高地壳水平的维持钾长石(40) 〜Ar /(39)〜Ar结果记录了一个脉冲,或多个脉冲,在大约200至200之间升起和冷却。 235 Ma和185 Ma,与Lofoten山脊两侧的三叠纪-侏罗纪裂谷盆地的形成相一致.Eidsfjord脱离似乎标志着早期泥盆纪脱离体系的北端,可向南追溯800 km到Nordfjord-Sogn脱离,向西横跨北大西洋到东格陵兰造山带共轭侧大致相同年龄的分队。 Eidsfjord支队的时间,几何学,运动学和神学发展与Nordfjord-Sogn支队非常相似,但前者的区别在于它目前缺乏泥盆纪沉积岩的裸露沉积物,位移量较小,掘出历史更长,后来由于与裂谷和最终始新世大陆分离有关的大角度正断层而被严重砍断,并且在上板中有大量的假速滑石发生。我们认为,艾兹峡湾支队是古代侵蚀的低成因低角度正断层的一个罕见例子。

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