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Late Palaeozoic deformation of post-Variscan lower crust: shear zone widening due to strain localization during retrograde shearing

机译:后Variscan下地壳的晚古生代变形:由于逆行剪切过程中的应变局部化,剪切带变宽

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摘要

The Santa Lucia Shear Zone (SLSZ, Corsica) is a granulite-facies Permian shear zone that developed after the emplacement of a deep-seated gabbroic intrusion. New structural data shows that the SLSZ results from the juxtaposition of three spatially distinct mylonite belts, which are the product of the interaction between magmatism, metamorphism and shearing over a temperature range from ~800 to ~400℃. During the earlier high-grade deformation stage, which was accompanied by decompression from ~7 to ~5 kb at ~800℃, the SLSZ has accommodated high finite strain on a shear zone ≥ 1 km wide. Strain became increasingly localized as temperature decreased, but rather than reactivating pre-existing shear zones as commonly expected, younger mylonites expanded into previously unsheared rock, extending the total width of the shear zone. The zonation of different fabrics across the SLSZ suggests that pre-existing compositional and grain size heterogeneities in the starting material played a key role in governing superposed generations of shear zones.
机译:圣卢西亚剪切带(可西嘉岛的SLSZ)是一个花岗岩相的二叠纪剪切带,它是在深层长辉岩侵入体侵入后形成的。新的结构数据表明,SLSZ是由三个在空间上不同的mylonite带并列形成的,它们是岩浆作用,变质作用和剪切作用在〜800至〜400℃范围内相互作用的产物。在较早的高阶变形阶段,伴随着在〜800℃下从〜7 kb到〜5 kb的减压,SLSZ在≥1 km的剪切带上承受了高有限应变。随着温度的降低,应变变得越来越局部化,但是年轻的硅藻土并没有像通常预期的那样重新激活先前存在的剪切带,而是膨胀成先前未剪切的岩石,从而扩展了剪切带的总宽度。 SLSZ上不同织物的分区表明,起始材料中预先存在的成分和晶粒尺寸异质性在控制剪切带的叠加世代中起着关键作用。

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