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Mesozoic Magmatism and Deformation in the Northern Owyhee Mountains, Idaho: Implications for Along-Zone Variations for the Western Idaho Shear Zone

机译:爱达荷州北部Owyhee山区中生代岩浆作用和变形:对爱达荷州西部剪切带沿地带变化的影响

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摘要

The northern Owyhee Mountains of southwestern Idaho contain granitoid rocks that are the same age as the Cretaceous western border zone of the Idaho batholith to the north of the Snake River Plain. They contain a well-developed and consistently oriented 020° foliation, zircon yielding U-Pb dates of ca. 160–48 Ma, and initial 87Sr/86Sr isotopic compositions that show a steep west-to-east transition in values from 0.704 to 0.708 over a distance of ∼30 km. The rocks of the northern Owyhee Mountains are interpreted to be the southward continuation (Owyhee segment) of the western Idaho shear zone. Similar to a well-studied section of the western Idaho shear zone by McCall (McCall segment), the Owyhee segment displays steep foliation and lineation orientations, deformation of 98–90 Ma plutons, steep Sr isotopic gradients, and syntectonic tonalite intrusions. However, the Owyhee segment has three major differences from the McCall segment: (1) significantly less well-developed solid-state strain fabric foliations; (2) trend of 020° rather than 000°; and (3) a wider transition zone in initial Sr ratios from 0.704 to 0.708. We present a simple tectonic model to explain these differences, assuming a 20° along-zone difference in the initial orientation of the western margin of the Laurentia, a rigid-body collision, homogeneous material behavior, and transpressional kinematics. For the Owyhee segment, the model predicts a lower oblique-convergence angle, less convergent displacement, more dextral transcurrent displacement, and an overall lower finite strain relative to the McCall segment.
机译:爱达荷州西南部的Owyhee山脉北部含有与斯内克河平原以北爱达荷州基岩的白垩纪西部边界区相同年龄的花岗岩。它们包含发育良好且方向一致的020°叶面,锆石的U-Pb年代约为。 160-48 Ma,以及最初的87Sr / 86Sr同位素组成,在约30 km的距离上,其值从0.704到0.708呈陡峭的西向东过渡。北部Owyhee山的岩石被解释为爱达荷州西部剪切带的向南延伸(Owyhee段)。与麦考尔(McCall区段)对爱达荷州西部剪切带的深入研究部分相似,Owyhee区段显示出陡峭的叶面和线向,98-90 Ma的云母变形,陡峭的Sr同位素梯度以及同色系方影突入。但是,Owyhee段与McCall段有三个主要区别:(1)固态应变织物叶的发达程度明显不足; (2)020°而非000°的趋势; (3)初始Sr比从0.704到0.708的过渡区域更宽。我们提出了一个简单的构造模型来解释这些差异,假设在Laurentia的西缘的初始方向,刚体碰撞,均质的材料行为和超压运动学方面,沿地带差异为20°。对于Owyhee段,该模型预测相对于McCall段,其斜会聚角较小,会聚位移较小,右向流向位移较大,整体有限应变较小。

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