Geological architecture and history of the Antigua volcano and carbonate platform: Was there an Oligo−Miocene lull in Lesser Antilles arc magmatism?

GSA Bulletin Pub Date : 2022-10-19 DOI:10.1130/b36465.1
Leny Montheil, M. Philippon, J. Cornée, M. BouDagher-Fadel, D. V. van Hinsbergen, P. Camps, M. Maffione, F. Audemard, Brechtje Brons, Koen J.R. Van der Looij, P. Münch
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引用次数: 2

Abstract

Since the acceptance of plate tectonics, the presence of calc-alkaline magmatic rocks has been recognized as evidence of subduction. But under specific geodynamic circumstances, subduction may occur without generating magmas. Here, we investigate the Cenozoic northern Lesser Antilles arc where, from sparsely exposed magmatic records, Eocene−Oligocene and Pliocene magmatic flare-ups and a Miocene lull were postulated. Nevertheless, most of the arc is submarine, so it is challenging to discern lulls and flare-ups from sampling bias. We review the magmatic evidence exposed onshore in the Lesser Antilles and investigate in detail the island of Antigua, which exposes an Eocene to Miocene volcanic sequence and platform carbonate series that coincide with the postulated lull. By combining lithostratigraphic analysis, structural mapping, 40Ar/39Ar geochronology, and biostratigraphy, we refine the magmatic history of the island and date the arrest of extensive arc magmatism at 35 Ma, with minor activity until 27 Ma. No magmatic products are interleaved with the platform sequence until the latest Oligocene, which confirms a lull in northern Lesser Antilles arc magmatism that may have lasted ca. 20 Ma. Flare-up of magmatic activity contributed to crustal thickening and land emersion, whereas magmatic lulls and related thermal cooling induced subsidence/submersion. Thus, we propose that the paleo-(bio)-geographical evolution of the eastern Caribbean region has been partly controlled by magmatic activity. Fault kinematic analysis, along with anisotropy of magnetic susceptibility, suggest that, at the island scale, magmatic arrest is not associated with a change in stress field during the Oligocene. We speculate that slab flattening triggered by progressive curvature played a role in the temporal shutdown of the northern Lesser Antilles arc.
安提瓜火山与碳酸盐岩台地的地质构造与历史:小安的列斯弧岩浆活动中是否存在渐近-中新世间歇?
自从板块构造学说被接受以来,钙碱性岩浆岩的存在被认为是俯冲作用的证据。但在特定的地球动力学环境下,可能发生俯冲而不产生岩浆。在这里,我们研究了小安的列斯岛弧北部的新生代,根据稀疏暴露的岩浆记录,假设始新世-渐新世和上新世的岩浆爆发和中新世的平静。然而,大部分弧线都是海底的,因此从采样偏差中辨别间歇和爆发是具有挑战性的。我们回顾了小安的列斯群岛陆上暴露的岩浆证据,并对安提瓜岛进行了详细调查,发现了始新世至中新世的火山序列和台地碳酸盐岩系列,这些序列与假定的平静期相吻合。结合岩石地层学分析、构造填图、40Ar/39Ar年代学和生物地层学,我们完善了该岛的岩浆历史,并确定了广泛的弧岩浆活动在35 Ma停止,直到27 Ma才有少量活动。直到渐新世晚期,没有岩浆产物与台地层序交织,这证实了小安的列斯岛弧北部岩浆活动可能持续了约20 Ma。岩浆活动的爆发导致地壳增厚和陆地外露,而岩浆间歇和相关的热冷却导致下沉/淹没。因此,我们认为东加勒比地区的古(生物)地理演化在一定程度上受到岩浆活动的控制。断层运动学分析和磁化率各向异性表明,在岛尺度上,岩浆停止与渐新世应力场的变化无关。我们推测,在小安的列斯群岛北部弧的暂时关闭中,由渐进式曲率引发的板块变平发挥了作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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