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Temperature–time evolution of the Assynt Terrane of the Lewisian Gneiss Complex of Northwest Scotland from zircon U-Pb dating and Ti thermometry

机译:锆石U-pb定年和Ti测温法测定苏格兰西北部Lewisian片麻岩复合体地层的温度 - 时间演变

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摘要

The Lewisian Gneiss Complex of Northwest Scotland is a classic Precambrian basement gneiss complex. The Lewisian is divided into a number of terranes on the basis of structural, metamorphic and geochronological evidence. The most well-studied of these is the Assynt Terrane, which forms the central part of the Lewisian outcrop on the Scottish mainland. Field evidence shows that it has a complex tectonothermal history, the early stages of which remain poorly constrained. This paper sets out to better understand the chronology and thermal evolution of the Assynt Terrane through zircon U-Pb dating and Ti-in-zircon thermometry, the latter applied to the Lewisian for the first time. This is placed in context by integration with detailed field mapping, sample petrography, zircon cathodoluminescence (CL) imaging and rare earth element (REE) analysis.\ud\udZircons from six tonalite-trondhjemite-granodiorite (TTG) gneiss samples and two metasedimentary gneiss samples were analysed. The TTG gneisses were predominantly retrogressed to amphibolite-facies; zircons showed a range of CL zoning patterns and REE profiles were similar to those expected for magmatic zircon grains. Zircons from the metasedimentary gneisses also displayed a range of CL zoning patterns and are depleted relative to chondrite in heavy REEs due to the presence of garnet.\ud\udZircon analysis records a spread of concordant U-Pb ages from ∼2500 to 3000 Ma. There is no evident correlation of ages with location in the crystal or with CL zoning pattern. A weighted average of 207Pb/206Pb ages from the oldest igneous zircon cores from the TTG gneiss samples gives an age of 2958 ± 7 Ma, interpreted to be a magmatic protolith crystallisation age. A weighted average of 207Pb/206Pb ages of the youngest metamorphic rims yields an age of 2482 ± 6 Ma, interpreted to represent the last high-grade metamorphism to affect these rocks. Ti-in-zircon thermometry records minimum temperatures of 710–834 °C, interpreted to reflect magmatic crystallisation.\ud\udREE profiling enabled the zircons in the metasedimentary rocks to be linked to the presence of metamorphic garnet, but resetting of U-Pb systematics precluded the determination of either protolith or metamorphic ages. Zircons from the metasedimentary gneisses generally record higher minimum temperatures (803–847 °C) than the TTG gneisses, interpreted to record zircon crystallisation in an unknown protolith.\ud
机译:苏格兰西北部的刘易斯片麻岩复合体是经典的前寒武纪地下片麻岩复合体。根据结构,变质和年代学证据,刘易斯被分为许多地层。研究最深入的是Assynt Terrane,它构成了苏格兰大陆路易斯盆地露头的中心部分。现场证据表明,它具有复杂的构造热历史,其早期阶段仍然受约束较弱。本文着手通过锆石U-Pb测年和Ti-in-zircon测温法更好地了解Assynt Terrane的年代学和热演化,后者首次应用于Lewisian。通过与详细的现场制图,样品岩相学,锆石阴极发光(CL)成像和稀土元素(REE)分析相结合,将其置于上下文中。\ ud \ ud来自六个斜长石-长白云母-碎屑闪长岩(TTG)片麻岩样品和两个准沉积的片麻岩的锆石样品进行了分析。 TTG片麻岩主要向角闪岩相倒退。锆石显示出一系列CL分区模式和REE剖面,与岩浆锆石晶粒的预期相似。变质沉积片麻岩中的锆石还表现出一系列的CL分区模式,并且由于石榴石的存在,相对于重稀土元素中的球粒陨石而言已经耗尽。\ ud \ ud锆石分析记录了约2500〜3000 Ma一致的U-Pb年龄。年龄与晶体中的位置或CL分区模式没有明显的相关性。来自TTG片麻岩样品中最古老的火成锆石核的207Pb / 206Pb年龄的加权平均值给出了2958±7 Ma的年龄,这被解释为岩浆原生岩的结晶年龄。最年轻的变质轮缘的207Pb / 206Pb年龄的加权平均值产生的年龄为2482±6 Ma,被解释为是影响这些岩石的最后一个高级变质作用。 Ti-in-zircon测温仪记录的最低温度为710–834°C,被解释为反映岩浆结晶。\ ud \ udREE分析使变质沉积岩中的锆石与变质石榴石联系在一起,但U-Pb重置系统的排除了确定原石时代或变质时代的可能性。沉积中期片麻岩中的锆石通常比TTG片麻岩记录的最低温度更高(803–847°C),这被解释为记录了未知原生石中的锆石结晶。

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