Episodic and long-lasting Paleozoic felsic magmatism in the pre-Alpine basement of the Suretta nappe (eastern Swiss Alps)

被引:0
作者
T. Scheiber
J. Berndt
B. D. Heredia
K. Mezger
O. A. Pfiffner
机构
[1] University of Bern,Institute of Geological Sciences
[2] Universität Münster,Institut für Mineralogie
来源
International Journal of Earth Sciences | 2013年 / 102卷
关键词
Geochronology; Suretta nappe; Rofna Porphyry Complex; LA-ICP-MS; Zircon;
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中图分类号
学科分类号
摘要
The Suretta nappe of eastern Switzerland contains a series of meta-igneous rocks, with the Rofna Porphyry Complex (RPC) being the most prominent member. We present LA-ICP-MS U–Pb zircon data from 12 samples representing a broad spectrum of meta-igneous rocks within the Suretta nappe, in order to unravel the pre-Alpine magmatic history of this basement unit. Fine-grained porphyries and coarse-grained augengneisses from the RPC give crystallization ages between 284 and 271 Ma, which either represent distinct magma pulses or long-lasting magmatic activity in a complex magma chamber. There is also evidence for an earlier Variscan magmatic event at ~320–310 Ma. Mylonites at the base of the Suretta nappe are probably derived from either the RPC augengneisses or another unknown Carboniferous–Permian magmatic protolith with a crystallization age between 320 and 290 Ma. Two polymetamorphic orthogneisses from the southern Suretta nappe yield crystallization ages of ~490 Ma. Inherited zircon cores are mainly of late Neoproterozoic age, with minor Neo- to Paleoproterozoic sources. We interpret the Suretta nappe as mainly representing a Gondwana-derived crustal unit, which was subsequently intruded by minor Cambrian–Ordovician and major Carboniferous–Permian magmatic rocks. Finally, the Suretta nappe was thrust into its present position during the Alpine orogeny, which hardly affected the U–Pb system in zircon.
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页码:2097 / 2115
页数:18
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共 224 条
[1]  
Ballèvre M(2012)Geochronology and geochemistry of Ordovician felsic volcanism in the Southern Armorican Massif (Variscan belt, France): implications for the breakup of Gondwana Gondwana Res 21 1019-1036
[2]  
Fourcade S(2000)Âge Paléozoique inférieur (U-Pb sur zircon) de métagranophyres de la nappe du Grand-Saint-Bernard (zona interna, vallée d’Aoste, Italie) Comptes Rendus de l’Académie des sciences Series IIA Earth and Planetary Science 330 473-478
[3]  
Capdevila R(2000)SHRIMP and IDTIMS U-Pb zircon ages of the pre-Alpine basement in the Internal Western Alps (Savoy and Piemont) Schweiz Mineral Petrogr Mitt 80 225-248
[4]  
Peucat JJ(2001)Theoretical description and experimental observation of aerosol transport processes in laser ablation inductively coupled plasma mass spectrometry J Anal At Spectrom 16 449-456
[5]  
Cocherie A(2007)Resetting of the U-Pb zircon system in Cambro-Ordovician intrusives of the Deep Freeze Range, Northern Victoria Land Antarctica J Petrol 48 327-364
[6]  
Fanning CM(2011)Timing of Palaeozoic magmatism in the Maggia and Sambuco nappes and paleogeographic implications (Central Lepontine Alps) Swiss J Geosci 104 1-29
[7]  
Bertrand JM(1996)The 500 Ma-old Thyon metagranite: a new A-type granite occurrence in the western Penninic Alps (Wallis, Switzerland) Eur J Mineral 8 565-575
[8]  
Guillot F(2000)Bimodal magmatism as a consequence of the post-collisional readjustment of the thickened Variscan continental lithosphere (Aiguilles Rouges - Mont Blanc Massifs, Western Alps) Geological Society of America Special Papers 350 221-233
[9]  
Leterrier J(2012)Age constraints on Lower Paleozoic convection system: magmatic events in the NW Iberian Gondwana margin Gondwana Res 21 1066-1079
[10]  
Bertrand JM(2000)Multistage Variscan magmatism in the central Tauern window (Austria) unveiled by U/Pb SHRIMP zircon data Contrib Miner Petrol 139 418-435