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首页> 外文期刊>Geosphere >Provenance signature of changing plate boundary conditions along a convergent margin: Detrital record of spreading-ridge and flat-slab subduction processes, Cenozoic forearc basins, Alaska
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Provenance signature of changing plate boundary conditions along a convergent margin: Detrital record of spreading-ridge and flat-slab subduction processes, Cenozoic forearc basins, Alaska

机译:沿汇聚边缘变化的板块边界条件的物源特征:散布脊和平板俯冲过程的碎屑记录,新生代前臂盆地,阿拉斯加

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Cenozoic strata from forearc basins in southern Alaska record deposition related to two different types of shallow subduction: Paleocenea€“Eocene spreading-ridge subduction and Oligocenea€“Recent oceanic plateau subduction. We use detrital zircon geochronology (n = 1368) and clast composition of conglomerate (n = 1068) to reconstruct the upper plate response to these two subduction events as recorded in forearc basin strata and modern river sediment. Following spreading-ridge subduction, the presence of Precambrian and Paleozoic detrital zircon ages in middle Eocenea€“lower Miocene arc-margin strata and Early Cretaceous ages in lower Miocene accretionary prisma€“margin strata indicates that sediment was transported to the basin from older terranes in interior Alaska and from the exhumed eastern part of the Cretaceous forearc system, respectively. By middle-late Miocene time, diminished abundances of these populations reflect shallow subduction of an oceanic plateau and associated exhumation that resulted in an overall contraction of the catchment area for the forearc depositional system.In the southern Alaska forearc basin system, upper plate processes associated with subduction of a spreading ridge resulted in an abrupt increase in the diversity of detrital zircon ages that reflect new sediment sources from far inboard regions. The detrital zircon signatures from strata deposited during oceanic plateau subduction record exhumation of the region above the flat slab, with the youngest detrital zircon population reflecting the last period of major arc activity prior to insertion of the flat slab. This study provides a foundation for new tectonic and provenance models of forearc basins that have been modified by shallow subduction processes, and may help to facilitate the use of U-Pb dating of detrital zircons to better understand basins that formed under changing geodynamic plate boundary conditions.
机译:来自阿拉斯加南部前陆盆地的新生代地层记录了与两种不同类型的浅层俯冲有关的沉积:古近纪—“始新世伸展脊俯冲和低层俯冲—最近的海洋高原俯冲。我们使用碎屑锆石的年代学(n = 1368)和砾岩的碎屑组成(n = 1068)来重建前板盆地地层和现代河流沉积物中记录的对这两个俯冲事件的上板响应。扩脊俯冲作用之后,中新世以来“中新世下部弧缘边缘地层和中白垩统增生棱柱下部”早白垩纪前寒武纪和古生代碎屑锆石的存在表明沉积物是从较旧的地层运到盆地的分别位于阿拉斯加内部和白垩纪前臂系统发掘的东部。到中新世中晚期,这些种群的数量减少反映了海洋高原的浅层俯冲作用和相关的发掘活动,导致前臂沉积系统的集水区整体收缩。随着隆起的俯冲作用,碎屑锆石年龄的多样性突然增加,这反映了来自远内区域的新沉积物来源。在海洋高原俯冲过程中沉积的地层中的碎屑锆石特征记录了平板上方区域的掘出,最年轻的碎屑锆石种群反映了插入平板之前的最后一次大弧活动。这项研究为经过浅层俯冲过程改造的前陆盆地新构造和物源模型提供了基础,并可能有助于促进使用碎屑锆石的U-Pb测年来更好地了解在不断变化的地球动力板块边界条件下形成的盆地。

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