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Late Cretaceous to Paleocene Metamorphism and Magmatism in the Funeral Mountains Metamorphic Core Complex, Death Valley, California

机译:晚白垩世至古新世变质作用和葬礼山脉变质核心复合体,死亡谷,加利福尼亚州的岩浆作用

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摘要

Amphibolite-facies Proterozoic metasedimentary rocks below the low-angle Cenozoic Boundary Canyon Detachment record deep crustal processes related to Mesozoic crustal thickening and subsequent extension. A 91.5 ± 1.4 Ma Th-Pb SHRIMP-RG (sensitive high-resolution ion microprobe–reverse geometry) monazite age from garnet-kyanite-staurolite schist constrains the age of prograde metamorphism in the lower plate. Between the Boundary Canyon Detachment and the structurally deeper, subparallel Monarch Spring fault, prograde metamorphic fabrics are overprinted by a pervasive greenschist-facies retrogression, high-strain subhorizontal mylonitic foliation, and a prominent WNW-ESE stretching lineation parallel to corrugations on the Boundary Canyon Detachment. Granitic pegmatite dikes are deformed, rotated into parallelism, and boudinaged within the mylonitic foliation. High-U zircons from one muscovite granite dike yield an 85.8 ± 1.4 Ma age. Below the Monarch Spring fault, retrogression is minor, and amphibolite-facies mineral elongation lineations plunge gently north to northeast. Multiple generations of variably deformed dikes, sills, and leucosomal segregations indicate a more complex history of partial melting and intrusion compared to that above the Monarch Spring fault, but thermobarometry on garnet amphibolites above and below the Monarch Spring fault record similar peak conditions of 620–680 °C and 7–9 kbar, indicating minor (u3c3–5 km) structural omission across the Monarch Spring fault. Discordant SHRIMP-RG U-Pb zircon ages and 75–88 Ma Th-Pb monazite ages from leucosomal segregations in paragneisses suggest that partial melting of Proterozoic sedimentary protoliths was a source for the structurally higher 86 Ma pegmatites. Two weakly deformed two-mica leucogranite dikes that cut the high-grade metamorphic fabrics below the Monarch Spring fault yield 62.3 ± 2.6 and 61.7 ± 4.7 Ma U-Pb zircon ages, and contain 1.5–1.7 Ga cores. The similarity of metamorphic, leucosome, and pegmatite ages to the period of Sevier belt thrusting and the period of most voluminous Sierran arc magmatism suggests that both burial by thrusting and regional magmatic heating contributed to metamorphism and subsequent partial melting.
机译:低角度新生界边界峡谷分离下的闪长岩相元古生界沉积岩记录了与中生代地壳增厚和随后扩展有关的深部地壳过程。石榴石-蓝晶石-辉石岩片岩中的独居石年龄为91.5±1.4 Ma Th-Pb SHRIMP-RG(敏感的高分辨率离子微探针-反向几何形状),其年龄限制了下板块的正变质年龄。在边界峡谷分离与结构较深,次平行的君主春季断层之间,普适的变质织物被普遍的绿片岩相倒退,高应变水平的马来酸叶状化以及与边界峡谷上的褶皱平行的突出的WNW-ESE伸展线覆盖分离。花岗岩伟晶岩堤坝变形,旋转成平行度,并在mylonitic叶状岩中捆绑。用一只白云母花岗岩堤坝制成的高U锆石的年龄为85.8±1.4 Ma。在君主春季断层以下,回退程度较小,而闪石相的矿物伸长线型从北向东北缓缓下沉。与君主温泉断层之上的相比,多代变形堤坝,基石和白质体偏析表明,部分融化和侵入的历史更为复杂,但君主温泉断层之上和之下的石榴石闪石的热压法记录了相似的峰值条件,即620– 680°C和7–9 kbar,表明整个君主春季断层略有结构性遗漏( u3c3–5 km)。石龙子的白斑隔离导致不协调的SHRIMP-RG U-Pb锆石年龄和75-88 Ma Th-Pb独居石年龄表明,元古代沉积原生质岩的部分熔融是结构上较高的86 Ma伟晶岩的来源。两个微变形的两云母白云石堤坝在Monarch Spring断层以下切割了高级变质纤维,产生了62.3±2.6和61.7±4.7 Ma的U-Pb锆石年龄,并包含1.5–1.7 Ga核。变质,白质体和伟晶岩年龄与Sevier带逆冲期和大部分Sierran弧岩浆活动的时期相似,这表明逆冲埋藏和区域岩浆加热都有助于变质和随后的部分熔融。

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