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Detrital zircon geochronology and Hf isotope geochemistry of Mesozoic sedimentary basins in south-central Alaska: Insights into regional sediment transport, basin development, and tectoni...

机译:滴乳锆石上传型沉积盆地地球化学和HF同位素地球化学中,阿拉斯加州中部地球化学沉积物:洞察区域沉积物运输,盆地发展和Tectoni ......

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The Jurassic–Cretaceous Nutzotin, Wrangell Mountains, and Wellesly basins provide an archive of subduction and collisional processes along the southern Alaska convergent margin. This study presents U-Pb ages from each of the three basins, and Hf isotope compositions of detrital zircons from the Nutzotin and Wellesly basins. U-Pb detrital zircon ages from the Upper Jurassic–Lower Cretaceous Nutzotin Mountains sequence in the Nutzotin basin have unimodal populations between 155 and 133 Ma and primarily juvenile Hf isotope compositions. Detrital zircon ages from the Wrangell Mountains basin document unimodal peak ages between 159 and 152 Ma in Upper Jurassic–Lower Cretaceous strata and multimodal peak ages between 196 and 76 Ma for Upper Cretaceous strata. Detrital zircon ages from the Wellesly basin display multimodal peak ages between 216 and 124 Ma and juvenile to evolved Hf compositions. Detrital zircon data from the Wellesly basin are inconsistent with a previous interpretation that suggested the Wellesly and Nutzotin basins are proximal-to-distal equivalents. Our results suggest that Wellesly basin strata are more akin to the Kahiltna basin, which requires that these basins may have been offset ~380 km along the Denali fault. Our findings from the Wrangell Mountains and Nutzotin basins are consistent with previous stratigraphic interpretations that suggest the two basins formed as a connected retroarc basin system. Integration of our data with previously published data documents a strong provenance and temporal link between depocenters along the southern Alaska convergent margin. Results of our study also have implications for the ongoing discussion concerning the polarity of subduction along the Mesozoic margin of western North America.
机译:侏罗纪 - 白垩纪Nutzotin,兰格尔山脉和盆地Wellesly提供俯冲和沿阿拉斯加南部会聚边缘的碰撞过程的档案。这项研究提出了U-Pb定从每三个盆地的年龄,并从Nutzotin和Wellesly盆地碎屑锆石的Hf同位素组成。从Nutzotin盆上侏罗纪-下白垩Nutzotin山序列U-Pb定碎屑锆石年龄有155和Ma和133之间的单峰主要种群少年的Hf同位素组合物。碎屑锆石年龄从159和152之间的兰格尔山脉盆文档单峰峰值年龄在马上侏罗纪-下白垩统和196和76之间的多峰峰值年龄为马上白垩地层。从216和124 Ma和少年之间的Wellesly盆显示多峰峰值年龄碎屑锆石年龄到演进的Hf的组合物。从Wellesly盆碎屑锆数据与先前的解释,即建议不一致Wellesly和Nutzotin盆地近侧至远侧当量。我们的研究结果表明,Wellesly盆地地层是更近似于Kahiltna流域,这就要求这些盆地可能已经抵消沿迪纳利断层〜380公里。我们从兰格尔山脉和盆地Nutzotin结果与以前的地层解释,暗示形成为连接弧后盆地系统中的两个盆地相一致。我们的数据的集成此前公布的数据文件,强大的原产地和沿阿拉斯加南部会聚边缘沉积中心之间的时间联系。我们的研究结果也有关于俯冲沿着北美西部中生代保证金极性正在进行的讨论产生影响。

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