The real McCoy: A record of deep-water basin deposition in southwestern North America during the Cretaceous

IF 2.8 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Basin Research Pub Date : 2024-10-03 DOI:10.1111/bre.12902
Emilia A. Caylor, Barbara Carrapa, Peter G. DeCelles, George E. Gehrels
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Abstract

The McCoy Mountains Formation (McMF) in southern California–Arizona preserves an anomalously thick record of sedimentation during the Mesozoic at a critical time when western North America experienced contrasting tectonic events related to intracontinental rifting along the Mexican Border rift system and consolidation of the North American Cordilleran system. The spaciotemporal interactions among these events and the development of the McCoy basin challenge our understanding of the evolution of the southern extent of North America. At its type locality in the McCoy Mountains, the McMF consists of ~ 7 km of low-grade metasedimentary rocks, originally interpreted as meandering fluvial to alluvial-fan deposits. Uncertainty in the initial timing of sedimentation in the McCoy basin has resulted in multiple tectonic models. We measured ~ 7160 m of detailed stratigraphy and present new sedimentological and detrital zircon results showing that the McCoy basin was occupied by deep-water turbidite systems. These systems deposited an upward-coarsening succession of fine- to coarse-grained detritus during the Cretaceous (ca. 137–70 Ma). Provenance data indicate that the McCoy basin received sediment from Proterozoic basement rocks and metamorphosed Palaeozoic to early Mesozoic sedimentary units. These source rocks are equivalent to the stratigraphy found in the Grand Canyon and Colorado Plateau regions and were likely shed from the southward-advancing Maria fold-thrust belt and possibly the southern Sevier belt in southern Nevada and California. These results, combined with subsidence curves typical of foreland basins, favour deposition within a subaqueous flexural foreland basin system. The presence of a Cretaceous foreland basin this far southwest challenges previously proposed models and suggests that the contractional tectonic regime associated with the North American Cordillera extended into the southwestern most United States during the Early–Late Cretaceous.

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真正的麦考伊白垩纪北美西南部深水盆地沉积记录
位于加利福尼亚州南部-亚利桑那州的麦考伊山脉地层(McCoy Mountains Formation,McMF)保留了中生代时期异常厚的沉积记录,当时正值北美西部经历了与沿墨西哥边界断裂系统的大陆内断裂和北美科迪勒拉系统的整合有关的对比强烈的构造事件的关键时期。这些事件之间的时空互动以及麦考伊盆地的发展挑战了我们对北美南部演化的理解。在其位于麦考伊山脉的典型地点,麦考伊盆地由约 7 千米的低品位变质岩组成,最初被解释为蜿蜒的河流至冲积扇沉积。麦考伊盆地最初沉积时间的不确定性导致了多种构造模型。我们测量了约 7160 米的详细地层,并提出了新的沉积学和碎屑锆石结果,表明 McCoy 盆地曾被深水浊积岩系统占据。这些系统在白垩纪(约 137-70 Ma)沉积了细粒到粗粒的碎屑岩上向粗化演替。产状数据表明,麦考伊盆地的沉积物来自新生代基底岩石和变质的古生代至中生代早期沉积单元。这些源岩相当于在大峡谷和科罗拉多高原地区发现的地层,很可能是从向南推进的玛丽亚褶皱推覆带以及内华达州南部和加利福尼亚州的塞维尔带南部流出的。这些结果与典型的前陆盆地沉降曲线相结合,表明沉积在水下褶皱前陆盆地系统中。白垩纪前陆盆地出现在如此遥远的西南地区,对之前提出的模型提出了挑战,并表明与北美科迪勒拉山系相关的收缩构造体系在白垩纪早-晚期延伸到了美国最西南部。
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来源期刊
Basin Research
Basin Research 地学-地球科学综合
CiteScore
7.00
自引率
9.40%
发文量
88
审稿时长
>12 weeks
期刊介绍: Basin Research is an international journal which aims to publish original, high impact research papers on sedimentary basin systems. We view integrated, interdisciplinary research as being essential for the advancement of the subject area; therefore, we do not seek manuscripts focused purely on sedimentology, structural geology, or geophysics that have a natural home in specialist journals. Rather, we seek manuscripts that treat sedimentary basins as multi-component systems that require a multi-faceted approach to advance our understanding of their development. During deposition and subsidence we are concerned with large-scale geodynamic processes, heat flow, fluid flow, strain distribution, seismic and sequence stratigraphy, modelling, burial and inversion histories. In addition, we view the development of the source area, in terms of drainage networks, climate, erosion, denudation and sediment routing systems as vital to sedimentary basin systems. The underpinning requirement is that a contribution should be of interest to earth scientists of more than one discipline.
期刊最新文献
The real McCoy: A record of deep-water basin deposition in southwestern North America during the Cretaceous Integrated analysis of the Neogene–Quaternary Valdera-Volterra Basin (Northern Apennines). Evidence for composite development of hinterland basins Finite element analysis of early deformations of carbonate platforms driven by differential compaction of basinal unit Reconstructing the Zama (Mexico) discovery source to sink story, Part I; detrital zircon U–Pb and (U-Th)/He provenance analysis and implications for sediment source terranes Sediment flux variation as a record of climate change in the Late Quaternary deep-water active Corinth Rift, Greece
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