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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Caribbean intra-plate deformation: Paleomagnetic evidence from St. Barthelemy Island for post-Oligocene rotation in the Lesser Antilles forearc
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Caribbean intra-plate deformation: Paleomagnetic evidence from St. Barthelemy Island for post-Oligocene rotation in the Lesser Antilles forearc

机译:加勒比地板变形:来自St. Barthelemy岛的古磁证据,在较小的安妥尔斯赛前脱牛肉旋转

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摘要

As subduction zones and their related processes are often studied in 2D, or cylindrical 3D sections, the dynamic effects of trench curvature and its evolution through time remain under-explored. Whereas temporal variations in trench trend may be estimated through restoring upper plate deformation, we investigate the forearc deformation history of the strongly curved northern Lesser Antilles trench, connecting the near-orthogonal Lesser Antilles subduction zone with the Motagua-Cayman transform plate boundary. Our new paleomagnetic dataset consists of 310 cores from Eo-Oligocene magmatic rocks and limestones from St. Barthelemy Island. The limestones yielded a post-folding magnetization containing a similar magnetic direction to those stored in magmatic rocks that intrude the folded carbonates, both indicating a post-Oligocene similar to 15 degrees, and perhaps up to 25 degrees counterclockwise rotation of the island. Our results highlight that the present-day trench curvature formed progressively during the Cenozoic, allowing us to discuss different tectonic scenarios explaining NE Caribbean plate deformation, and to identify key targets for future research on tectonic architecture and the potential present-day activity of infra-plate deformation that may pose seismic hazards.
机译:作为俯冲区域及其相关过程通常在2D或圆柱3D部分中研究,沟槽曲率的动态效果及其通过时间的演化仍然持续。虽然可以通过恢复上板变形来估计沟槽趋势的时间变化,但我们研究了强烈弯曲的北方较小的安妥尔斯沟槽的前臂变形史,将近正交较小的安妥尔斯俯冲区与Motagua-Cayman变换板边界连接。我们的新古磁石数据集由来自eo-Oligocene岩石岩石和圣巴特里米岛的石灰石的310个核心组成。石灰岩产生折叠后磁化,其含有与储存在岩石岩中的那些相似的磁方向,该磁性岩石侵入折叠的碳酸盐,两者都表示类似于15度的寡核苷酸,并且可能逆时针旋转25度逆时针旋转岛。我们的结果强调,当今沟槽曲率在新生代期间逐步形成,允许我们讨论解释NE加勒比板变形的不同构造情景,并识别未来构造建筑研究的关键目标和外部的潜在日期活动板变形可能造成地震危害。

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