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Accommodation of transpressional strain in the Arabia-Eurasia collision zone: new constraints from (U-Th)/He thermochronology in the Alborz mountains, north Iran

机译:阿拉伯-欧亚大陆碰撞带超压应变的适应:伊朗北部阿尔伯兹山脉(U-Th)/ He热年代学的新限制

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摘要

The Alborz range of N Iran provides key information on the spatiotemporal evolution and characteristics of the Arabia-Eurasia continental collision zone. The southwestern Alborz range constitutes a transpressional duplex, which accommodates oblique shortening between Central Iran and the South Caspian Basin. The duplex comprises NW-striking frontal ramps that are kinematically linked to inherited E-W-striking, right-stepping lateral to obliquely oriented ramps. New zircon and apatite (U-Th)/He data provide a high-resolution framework to unravel the evolution of collisional tectonics in this region. Our data record two pulses of fast cooling associated with SW-directed thrusting across the frontal ramps at ~ 18–14 and 9.5-7.5 Ma, resulting in the tectonic repetition of a fossil zircon partial retention zone and a cooling pattern with a half U-shaped geometry. Uniform cooling ages of ~ 7–6 Ma along the southernmost E-W striking oblique ramp and across its associated NW-striking frontal ramps suggests that the ramp was reactivated as a master throughgoing, N-dipping thrust. We interpret this major change in fault kinematics and deformation style to be related to a change in the shortening direction from NE to N/NNE. The reduction in the obliquity of thrusting may indicate the termination of strike-slip faulting (and possibly thrusting) across the Iranian Plateau, which could have been triggered by an increase in elevation. Furthermore, we suggest that ~ 7-6-m.y.-old S-directed thrusting predated inception of the westward motion of the South Caspian Basin.
机译:伊朗北部的阿尔伯兹山脉提供了有关阿拉伯-欧亚大陆碰撞带的时空演化和特征的关键信息。西南的阿尔伯兹山脉构成了一个超压双重体,适应了伊朗中部和南里海盆地之间的斜向缩短。复式建筑包括NW撞击式前坡道,这些坡道在运动学上与继承的E-W撞击式运动联系在一起,向右倾斜的横向坡道指向倾斜的坡道。新的锆石和磷灰石(U-Th)/ He数据提供了高分辨率的框架,可以揭示该地区碰撞构造的演化。我们的数据记录了两个快速冷却脉冲,分别是在SW〜18–14和9.5-7.5 Ma处通过西南向引导的斜冲,这导致了化石锆石部分保留区的构造重复和U-型为一半的冷却模式。形状的几何。沿E-W撞击的最南斜斜坡及其相关的NW撞击前坡的均匀冷却年龄为7〜6-6 Ma,这表明该坡经过了N浸入推力才被重新激活。我们认为断层运动学和变形方式的这一主要变化与从NE到N / NNE缩短方向的变化有关。推力倾角的减小可能表明整个伊朗高原的走滑断层(可能是推力)已经终止,这可能是由于海拔升高引起的。此外,我们建议,〜7-6-y.y。年龄的S向冲断早于南里海盆地向西运动开始。

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