Geochronology and geochemistry of zircon from Early to Middle Devonian granitic and felsic volcanic rocks from the Cashes Ledge igneous suite, central Gulf of Maine, USA

Y. Kuiper, S. Barr, J. Crowley, A. K. Souders
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Abstract

New zircon U–Pb, trace element, and Lu–Hf laser ablation inductively coupled mass spectrometry (LA-ICP-MS) data are presented for five Early to Middle Devonian granitic and felsic volcanic rocks from the Cashes Ledge igneous suite, central Gulf of Maine, USA. These samples were previously analyzed by U–Pb LA-ICP-MS and whole-rock geochemical methods and the new data generally corroborate the earlier results. Coarse-grained alkali-feldspar granite from northwest of the Fundy magnetic anomaly, the interpreted fault boundary in the offshore between Gondwanan microcontinents Ganderia to the northwest and Avalonia to the southeast, yielded a crystallization age of 414 ± 2 Ma. Southeast of the inferred fault, crystallization ages are 385 ± 3 Ma and 386 ± 3 Ma for two crystal tuff samples near the fault, 403 ± 3 Ma for an alkali-feldspar granite ~50 km southeast of the fault, and 399 ± 5 Ma for syenogranite ~25 km southeast of the fault, which also yielded inherited grains at ~1.3 Ga and between 613 ± 15 Ma and 558 ± 9 Ma. Lu–Hf LA-ICP-MS data for zircon retaining igneous crystallization ages have εHf(t) between 2.9 and 13.1 and model ages based on felsic sources between 0.52 and 1.04 Ga, reflecting a mix of late Mesoproterozoic (Avalonian?) basement and primitive melt, possibly in an extensional setting. Zircon Nb/Hf ratios generally greater than 0.001 indicate a predominately within-plate/anorogenic/rift setting, consistent with their whole-rock chemistry. U/Yb-Nb/Yb and U/Yb-Hf tectonic setting discrimination diagrams show ocean island to continental arc signatures, with a stronger continental arc signature for the syenogranite. Most zircon grains have Eu/Eu* values less than 0.1, indicating a crustal thickness of ~30 km or less at the time of their crystallization.
美国缅因湾中部Cashes Ledge火成岩套中早-中泥盆世花岗质和长英质火山岩锆石年代学及地球化学
利用激光烧蚀电感耦合质谱(LA-ICP-MS)对美国缅因湾中部Cashes Ledge火成岩套进行了5个早至中泥盆世花岗质和长英质火山岩进行了新的锆石U-Pb、微量元素和Lu-Hf数据分析。这些样品之前用U-Pb LA-ICP-MS和全岩地球化学方法进行了分析,新的数据基本证实了之前的结果。粗粒碱长石花岗岩的结晶年龄为414±2 Ma,在冯迪磁异常西北方,冈瓦南微大陆(Ganderia)西北和阿瓦洛尼亚(Avalonia)东南之间的离岸解释断裂边界处。在推断断层东南方,断层附近的2个凝灰岩结晶年龄分别为385±3 Ma和386±3 Ma,断层东南方50 km处的碱长石花岗岩结晶年龄为403±3 Ma,断层东南方25 km处的同长花岗岩结晶年龄为399±5 Ma,也产生了~1.3 Ga、613±15 Ma ~ 558±9 Ma之间的继承晶粒。锆石保留火成岩结晶年龄的Lu-Hf LA-ICP-MS数据εHf(t)在2.9 ~ 13.1之间,基于长硅源的模式年龄在0.52 ~ 1.04 Ga之间,反映了晚中元古代(Avalonian?)基底和原始熔体的混合,可能处于伸展环境。锆石Nb/Hf比值普遍大于0.001,表明其主要为板内/造山带/裂谷环境,与全岩化学特征一致。U/Yb- nb /Yb和U/Yb- hf构造背景判别图显示洋岛-大陆弧特征,同长花岗岩大陆弧特征较强。大多数锆石颗粒Eu/Eu*值小于0.1,表明其结晶时的地壳厚度为~ 30km或更小。
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