方解石U-Pb和赤铁矿(U-Th)/He定年揭示了西阿尔卑斯同造山伸展的时代

IF 8.5 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Antonin Bilau , Yann Rolland , Stéphane Schwartz , Cécile Gautheron , Thierry Dumont , Dorian Bienveignant , Benjamin Brigaud , Nicolas Godeau , Abel Guihou , Pierre Deschamps , Xavier Mangenot , Marianna Corre , Rosella Pinna-Jamme , Nathaniel Findling
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引用次数: 0

摘要

随着时间的推移,了解断层活动为重建造山带的构造历史、评估地震风险和理解矿化过程提供了有价值的见解。在西阿尔卑斯地区,现有构造模式的主要争议之一是对同造山伸展的理解。地震证据表明,广泛的伸展变形与主要岩石圈结构的重新激活有关,如Penninic fronthrust (PFT)。然而,由于缺乏合适的地质年代学资料,伸展的发生年龄和起源仍然存在争议。断层赤铁矿和方解石地质年代学以及团块同位素数据可用于将流体状态与断层活动联系起来。对PFT上伸展断层的方解石角砾岩的分析表明,该区存在两种不同的流体形态。第一个阶段发生在2 Ma之前,与深部流体上涌有关,由断层方解石记录,温度为>;110°C。第二种流体状态的特征是大气特征,温度约为36°C,代表2 Ma以来的结晶。本研究提出了西阿尔卑斯中新世构造史的新模式,将(U-Th)/He和U-Pb年代学与断裂赤铁矿(13.3±0.8 ~ <;0.8 Ma)和方解石(5.3±0.6 Ma)。结果表明,从中中新世(约13 Ma)到第四纪,伸展断裂活动自东向西发展。构造带内部伸展的开始与西阿尔卑斯前陆褶皱冲断带的发育相吻合。我们的新模型提出,伸展发生在一个大的顶部向西的逆冲的上壁上,被称为阿尔卑斯锋面逆冲。这个推力,位于外部晶体地块的西部,使其在后方上升和延伸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Timing of syn-orogenic extension in the Western Alps revealed by calcite U-Pb and hematite (U-Th)/He dating

Timing of syn-orogenic extension in the Western Alps revealed by calcite U-Pb and hematite (U-Th)/He dating
Understanding fault activity over time provides valuable insights for reconstructing the tectonic history of an orogen, assessing seismological risks and understanding mineralization processes. In the Western Alps, one of the main controversies in existing tectonic models is the understanding of syn-orogenic extension. Seismological evidence shows widespread extensional deformation related to the reactivation of major lithospheric structures, such as the Penninic Frontal Thrust (PFT). However, the onset age and origin of extension are still debated due to the lack of suitable geochronological data. Fault hematite and calcite geochronology as well as clumped isotope data can be used to relate fluid regimes to fault activity. The analysis of calcite brecciae from extensional faults above the PFT shows that two distinct fluid regimes were present. The first regime, occurring before 2 Ma is associated with upwelling of deep fluids and is recorded by fault calcite at a temperature > 110°C. The second fluid regime is characterized by a meteoric signature and temperatures around 36 °C, representing crystallization since 2 Ma. This study presents a new model for the Miocene tectonic history of the Western Alps that combines (U-Th)/He and U-Pb geochronology on fault hematite (13.3 ± 0.8 to < 0.8 Ma) and calcite (5.3 ± 0.6 Ma). Results demonstrate a progression of extensional fault activity from east to west, from the Middle Miocene (ca. 13 Ma) to the Quaternary. The onset of extension in the inner part of the belt coincides with the development of the fold and thrust belt in the western Alpine foreland. Our new model proposes that extension occurs in the hanging wall of a large top-to-the-west thrust, known as the Alpine Frontal Thrust. This thrust, located to the west of the External Crystalline Massifs gives rise to their uplifting and extension at the rear.
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来源期刊
Geoscience frontiers
Geoscience frontiers Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
17.80
自引率
3.40%
发文量
147
审稿时长
35 days
期刊介绍: Geoscience Frontiers (GSF) is the Journal of China University of Geosciences (Beijing) and Peking University. It publishes peer-reviewed research articles and reviews in interdisciplinary fields of Earth and Planetary Sciences. GSF covers various research areas including petrology and geochemistry, lithospheric architecture and mantle dynamics, global tectonics, economic geology and fuel exploration, geophysics, stratigraphy and paleontology, environmental and engineering geology, astrogeology, and the nexus of resources-energy-emissions-climate under Sustainable Development Goals. The journal aims to bridge innovative, provocative, and challenging concepts and models in these fields, providing insights on correlations and evolution.
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