Rapid switch in geodynamic setting revealed by episodic granitoid magmatism in the Lynn Lake greenstone belt of Paleoproterozoic Trans-Hudson Orogen, Manitoba, Canada

被引:1
作者
Yang, Xue-Ming [1 ]
Lawley, Christopher J. M. [2 ]
机构
[1] Manitoba Geol Survey, 360-1395 Ellice Ave, Winnipeg, MB R3G 3P2, Canada
[2] Geol Survey Canada, 601 Booth St, Ottawa, ON K1A 0E8, Canada
关键词
Bedrock geological mapping; Granitoids; Magmatic alkalinity; Trace element modeling; Geodynamic evolution; Lynn Lake greenstone belt; Trans-Hudson Orogen; A-TYPE GRANITOIDS; ND ISOTOPIC EVOLUTION; CRUSTAL EVOLUTION; CRATON; DEPOSIT; ROCKS; DISCRIMINATION; GEOCHEMISTRY; ADAKITE; ZIRCON;
D O I
10.1016/j.lithos.2024.107534
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Bedrock geological mapping indicates that diverse granitoid intrusions occur closely in space and time in the Paleoproterozoic Lynn Lake greenstone belt of the Trans-Hudson Orogen, Manitoba, Canada. These intrusions display distinct geochemical characteristics of I-type, A-type and adakite-like granitoids as revealed by their respective alkalinity, alumina saturation state, and trace element concentrations and ratios. The ca. 1879 Ma Itype granitoid pluton intruded the 1892 to 1884 Ma supracrustal package of volcanic, volcaniclastic and minor sedimentary rocks that constitute the greenstone belt, which was cut by 1873 Ma A-type granite and then by 1854 Ma adakite-like quartz diorite intrusions. Why the geochemical affinities of these granitoids change so rapidly (within similar to 25 Myr) in orogenic belts, however, is not as well understood. Here we propose using Sm-Nd isotope data and trace element modeling that the compositional variety of the granitoid intrusions likely reflects the mineral assemblages of their source rocks rather than magmatic fractionation. They may have been formed by partial melting of the disparate sources at different depths to respond to the change in tectonic regimes. The timing of the granitoid intrusions tracks a rapid geodynamic transition from subduction to intra-arc extension and to slab break-off due to terrane accretion and collision. This records a crucial piece of history in geodynamic evolution of the Trans-Hudson Orogen, which to date has been overlooked largely in many other orogens.
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页数:9
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