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Is quartz a potential indicator of ultrahigh-pressure metamorphism? Laser Raman spectroscopy of quartz inclusions in ultrahigh-pressure garnets

机译:石英是超高压变质作用的潜在指标吗?超高压石榴石中石英夹杂物的激光拉曼光谱

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Laser Raman microspectroscopy was applied to quartz inclusions in coesite- and diamond-grade metapelites from the Kokchetav ultrahigh-pressure metamorphic (UHPM) complex, Northern Kazakhstan, and diamond-grade eclogite xenoliths from the Mir kimberlite pipe, Yakutiya, Russia to assess the quantitative correlation between the Raman frequency shift and metamorphic pressure. Quartz crystals sealed in garnets have a higher frequency shift than those in the matrix. Residual pressures retained by quartz inclusions depend on the metamorphic history of the garnet host. The Raman frequency shift of quartz inclusions in garnet from coesite-grade and diamond-grade metamorphic rocks shows no systematic change with increasing peak metamorphic pressures. The highest shifts of the main Raman bands of quartz were documented for monocrystalline quartz inclusions in garnets from a diamond-grade eclogite xenolith. Calibrations based on experimental work suggest that the measured Raman frequency shifts signify residual pressures of 0.1–0.6 GPa for quartz inclusions from coesite-grade metapelites from Kokchetav, 0.1–0.3 GPa for quartz inclusions from diamond-grade metapelites from Kokchetav, and 1.0–1.2 GPa for quartz inclusions from the diamondgrade eclogite xenoliths from the Mir kimberlite pipe. Normal stresses and internal (residual) pressures of quartz inclusions in garnet were numerically simulated with a 3-shell elastic model. Estimated values of residual pressures are inconsistent with the residual pressures estimated from the frequency shifts. Residual pressure slightly depends on P–T conditions at peak metamorphic stage. Laser Raman microspectroscopic analysis of quartz is a potentially powerful method for recovering an ultrahigh pressure metamorphic event. Monocrystalline quartz inclusions yielding a residual pressure greater than 2.5 GPa might indicate the presence of a former coesite.
机译:激光拉曼显微技术应用于哈萨克斯坦北部库克切塔夫超高压变质(UHPM)复合体的石英岩和金刚石级变石中的石英包裹体,以及俄罗斯雅库提亚的米尔金伯利岩管的金刚石级榴辉岩异岩。拉曼频移和变质压力之间的相关性。密封在石榴石中的石英晶体比基体中的晶体具有更高的频移。石英夹杂物保留的残余压力取决于石榴石宿主的变质史。石榴石中石英岩的拉曼频移来自于堇青石级和金刚石级变质岩,并没有随峰值变质压力的增加而发生系统变化。据记录,从钻石级榴辉岩异种石中石榴石中的单晶石英夹杂物,石英主要拉曼光谱带的位移最高。根据实验工作进行的校准表明,所测得的拉曼频移表示,来自科科切夫的堇青石级变石的石英夹杂物的残余压力为0.1-0.6 GPa,来自科科切夫的金刚石级变石的石英夹杂物的残余压力为0.1-0.3 GPa,以及1.0-1.2 GPa用于Mir金伯利岩管中钻石级榴辉岩异岩的石英夹杂物。用三壳弹性模型对石榴石中石英夹杂物的正应力和内(残余)压力进行了数值模拟。残余压力的估计值与从频移估计的残余压力不一致。在峰值变质阶段,残余压力略微取决于PT条件。石英的激光拉曼光谱分析是恢复超高压变质事件的潜在强大方法。残余压力大于2.5 GPa的单晶石英夹杂物可能表明存在前堇青石。

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