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Crustal shortening, exhumation, and strain localization in a collisional orogen: The Bajo Pequeno Shear Zone, Sierra de Pie de Palo, Argentina

机译:碰撞造山带中的地壳缩短,发掘和应变定位:阿根廷帕拉塞拉利昂山脉的Bajo Pequeno剪切带

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摘要

The Bajo Pequeno Shear Zone (BPSZ) is a lower-crustal shear zone that records shortening and exhumation associated with the establishment of a new plate boundary, and its placement in a regional structural context suggests that local- to regional-scale strain localization occurred with progressive deformation. A kilometer-scale field and analytical cross section through the ~80 m thick BPSZ and its adjacent rocks indicates an early Devonian (405-400 Ma) phase of deformation on the western margin of Gondwanan continental crust. The earliest stages of the BPSZ, recorded by metamorphic and microstructural data, involved thrusting of a hotter orthogneiss over a relatively cool pelitic unit, which resulted in footwall garnet growth and reset footwall white mica ~(40)Ar/~(39)Ar ages in proximity to the shear zone. Later stages of BPSZ activity, as recorded by additional microstructures and quartz c-axis opening angles, were characterized by strain localization to the center of the shear zone coincident with cooling and exhumation. These and other data suggest that significant regional tectonism persisted in the Famatinian orogenic system for 60-70 million years after one microplate collision (the Precordillera) but ceased 5-10 million years prior to another (Chilenia). A survey of other synchronous structures shows that strain was accommodated on progressively narrower structures with time, indicating a regional pattern of strain localization and broad thermal relaxation as the Precordillera collision evolved.
机译:Bajo Pequeno剪切带(BPSZ)是一个下地壳剪切带,记录了与新板块边界的建立有关的缩短和发掘,并且其在区域结构环境中的位置表明,局部至区域尺度的应变局部化发生在渐进变形。穿过〜80 m厚的BPSZ及其相邻岩石的一公里规模的场和分析横截面表明,冈瓦纳大陆壳西缘的早期泥盆纪(405-400 Ma)变形相。 BPSZ的最早阶段,通过变质和微结构数据记录,涉及将较热的直立性片麻岩冲入相对凉爽的胶粒单元,这导致了下盘石榴石的生长和下盘下白云母的重现(40)Ar /〜(39)Ar年龄在剪切区附近。 BPSZ活性的后期阶段,如通过其他微结构和石英c轴张开角所记录,其特征是应变局部化到剪切区中心,同时冷却和回火。这些数据和其他数据表明,一次板块碰撞(Precordillera)后,法马汀造山系统中仍存在显着的区域构造,持续了60-70百万年,而另一次板岩碰撞(Chilenia)则持续了5-10百万年。对其他同步结构的调查表明,随着时间的流逝,应变被容纳在逐渐变窄的结构上,表明随着Precordillera碰撞的发展,应变局部化和宽广的热弛豫的区域模式。

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  • 来源
    《Tectonics》 |2014年第8期|1277-1303|共27页
  • 作者单位

    Department of Geology, University of California, Davis, California, USA,Department of Earth Science, University of California, Santa Barbara, California, USA;

    Department of Geology, University of California, Davis, California, USA;

    Department of Geological and Environmental Sciences, Stanford University,Stanford, California, USA;

    Department of Earth and Planetary Science, University of California, Berkeley, California, USA;

    Department of Geoscience, University of Iowa, Iowa City, Iowa, USA;

    Department of Geological Sciences, University of Oregon, Eugene, Oregon, USA;

    Department of Earth and Planetary Science, University of California, Berkeley, California, USA,Berkeley Geochronology Center, Berkeley, California, USA;

    CONICET, Buenos Aires,Argentina,Laboratorio de Tectonica Andina-FCEyN, Universidad de Buenos Aires, Buenos Aires, Argentina;

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