Rapid emplacement of the Oman ophiolite: Thermal and geochronologic constraints

被引:307
作者
Hacker, BR
Mosenfelder, JL
Gnos, E
机构
[1] Dept. of Geol. and Environ. Sciences, Stanford University, Stanford, CA
[2] Dept. of Geol. and Environ. Sciences, Stanford University, Stanford
[3] Geological Sciences, University of California, Santa Barbara
关键词
D O I
10.1029/96TC01973
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
In understanding of ophiolite emplacement requires knowledge of the elapsed time between igneous crystallization and intraoceanic thrusting, and the rate and duration of that thrusting. Hornblende 40Ar/39Ar ages demonstrate that the igneous oceanic crust in Oman crystallized and cooled to similar to 825 K in 1-2 m.y. Hornblende ages from metamorphic rocks and from cross-cutting dikes require that the basal metamorphic thrust fault beneath the ophiolite also cooled below similar to 825 K in 1-2 m.y. Motion along the sole thrust accounted for 200 km of displacement at a rate of 100-200 mm/yr. On the basis of age relationships and thermal considerations, we favor a two-stage model for the initial stages of Samail ophiolite emplacement: intraoceanic thrusting over < 2-m.y.-old lithosphere at 150 km/m.y. parallel to a spreading ridge for 1-2 m.y., followed by equally rapid and brief thrusting over cold and old lithosphere. Preservation of the Samail ophiolite is a direct result of its young age and positive buoyancy at the time of ocean closure, and we propose that all ophiolites that originated near spreading centers and were emplaced onto continents were young at the time of intraoceanic thrusting.
引用
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页码:1230 / 1247
页数:18
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