首页> 外文期刊>Canadian journal of earth sciences >The tectonic significance of the Early Cretaceous forearc-metamorphic assemblage in south-central Alaska based on detrital zircon U-Pb dating of sedimentary protoliths
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The tectonic significance of the Early Cretaceous forearc-metamorphic assemblage in south-central Alaska based on detrital zircon U-Pb dating of sedimentary protoliths

机译:基于沉积原生岩碎屑锆石U-Pb定年的阿拉斯加中南部早白垩世前陆变质组合的构造意义

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A complex array of faulted arc rocks and variably metamorphosed forearc accretionary complex rocks form a mappable arc-forearc boundary in southern Alaska known as the Border Ranges fault (BRF). We use detrital U-Pb zircon dating of metasedimentary rocks within the Knik River terrane in the western Chugach Mountains to show that a belt of Early Cretaceous amphibolite-facies metamorphic rocks along the BRF was formed when older melange rocks of the Chugach accretionary complex were reworked in a sinistral-oblique thrust reactivation of the BRF during a period of forearc plutonism. The metamorphic subterrane of the Knik River terrane has a maximum depositional age (MDA) of 156.5 +/- 1.5 Ma and a detrital zircon age spectrum that is indistinguishable from the Potter Creek assemblage of the Chugach accretionary complex, supporting correlation of these units. These ages contrast strongly with new and existing data that show Triassic to earliest Jurassic detrital zircon ages from metamorphic screens in the plutonic subterrane of the Knik River terrane, a fragmented Early Jurassic plutonic assemblage generally interpreted as the basement of the Peninsular terrane. Based on these findings, we propose the following new terminology for the Knik River terrane: (1) "Carpenter Creek metamorphic complex" for the Early Cretaceous "metamorphic subterrane", (2) "western Chugach trondhjemite suite" for the Early Cretaceous forearc plutons within the belt, (3) "Friday Creek assemblage" for a transitional melange unit that contains blocks of the Carpenter Creek complex in a chert-argillite matrix, and (4) "Knik River metamorphic complex" in reference to metamorphic rocks engulfed by Early Jurassic plutons of the Peninsular terrane that represent the roots of the Talkeetna arc. The correlation of the Carpenter Creek metamorphic complex with the Chugach melange indicates that the trace of the BRF lies similar to 1-5 km north of the map trace shown on geologic maps, although, like other segments of the BRF, this boundary is blurred by local complexities within the BRF system. Ductile deformation of the melange is sufficiently intense that few vestiges of its original melange fabric exist, suggesting the scarcity of rocks described as melange in the cores of many orogens may result from misidentification of rocks that have been intensely overprinted by younger, ductile deformation.
机译:复杂的断层弧岩阵列和变质的前臂增生复杂岩层形成了阿拉斯加南部的一个可绘制的弧前臂边界,称为边界范围断层(BRF)。我们使用Chugach西部西部Knik河地层内的准沉积岩的碎屑U-Pb锆石测年表明,当对Chugach增生复合物的较老的混杂岩进行改造时,沿BRF形成了早白垩世闪石相变质带。前臂冥想期间BRF的左斜斜推力重新激活。肯尼克河地貌的变质地下具有156.5 +/- 1.5 Ma的最大沉积年龄(MDA),碎屑锆石年龄谱与Chugach增生复合体的Potter Creek组合物没有区别,支持了这些单元的相关性。这些年龄与新的和现有的数据形成鲜明对比,这些数据表明,三叠纪至最早的侏罗纪碎屑锆石年龄来自于肯尼克河(Knik River)地体的深部地下的变质筛查,这是一个碎片化的侏罗纪早期的深部组合,通常被解释为半岛地层的基底。基于这些发现,我们为Knik River地层提出以下新术语:(1)早期白垩纪“变质地下”的“ Carpenter Creek变质复合体”,(2)早期白垩纪前臂云母的“西部Chugach变色岩组”在该带内,(3)过渡混杂单元的“星期五溪组合”,其中包含在斜方斜长方晶石基质中的Carpenter Creek复合体块,以及(4)“ Knik River变质复合体”,指的是被厄瓜多尔早期吞噬的变质岩代表Talkeetna弧线根部的半岛地形的侏罗纪小行星。 Carpenter Creek变质复合体与Chugach混杂体的相关性表明,BRF的痕迹与地质图所示的地图踪迹以北1-5 km相似,尽管与BRF的其他部分一样,该边界也被模糊了BRF系统内的局部复杂性。混合物的延展性变形非常强烈,以至于其原始混杂结构的痕迹很少存在,这表明在许多造山带的岩心中被描述为混合物的岩石稀缺,这可能是由于对岩石的误认而导致的,而岩石的年轻化,延性变形强烈地覆盖了岩石。

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