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首页> 外文期刊>Geosphere >Middle Miocene to recent exhumation of the Slate Range, eastern California, and implications for the timing of extension and the transition to transtension
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Middle Miocene to recent exhumation of the Slate Range, eastern California, and implications for the timing of extension and the transition to transtension

机译:中新世至最近在加利福尼亚州东部的石板山脉掘出的遗址,以及对扩展时间和过渡到过渡的影响

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New mapping combined with fault-slip and thermochronological data show that Middle Miocene to recent extension and exhumation of the Slate Range, eastern California, is produced by the active Searles Valley fault system and the Slate Range detachment, an older Middle Miocene low-angle normal fault. Offset Middle Miocene rocks record a combined a??9 km of west-directed extension over the past a??14 m.y. for the fault zones. (U-Th)/He apatite cooling ages of samples from the central and southern Slate Range indicate that footwall cooling began ca. 14 Ma; we interpret this as the age of initiation of motion on the Slate Range detachment. This timing is consistent with inferences made using stratigraphic and structural criteria. Data from the northern Slate Range show that rapid fault slip began along the Searles Valley fault ca. 4 Ma; data from the central and southern Slate Range can be interpreted as indicating cooling at 5a€“6 Ma. This timing correlates to the results of nearby studies, suggesting a strain transition in the surrounding area between ca. 6 and 3 Ma. The data collected are most consistent with a westward migration in the locus of transtensional deformation, and show that the initiation of that deformation commonly lags the timing predicted by plate reconstructions by a few million years.
机译:新的制图结合断层滑动和热年代学数据表明,中新世至最近扩展和掘出的加利福尼亚东部石板山脉,是由活跃的塞尔斯谷断层系统和板岩山脉脱离,这是一个较旧的中新世低角度法线。故障。偏移的中新世岩石记录了过去14 y年西向延伸9 km。对于故障区域。板岩中部和南部样品的(U-Th)/ He磷灰石冷却年龄表明,大约在大约30年前后开始了下盘冷却。 14马;我们将其解释为石板山脉脱离运动开始的年龄。这一时机与使用地层和构造标准所作的推论是一致的。来自北板岩山脉的数据表明,沿着塞尔斯谷断裂带开始快速断层滑动。 4毫;来自中部和南部板岩山脉的数据可以解释为指示在5a-6Ma处的冷却。该时间与附近的研究结果相关,表明在大约3℃之间的周围区域发生了应变转变。 6和3 Ma。所收集的数据与在拉张形变的地方向西移动最一致,并且表明该形变的开始通常比板块重建所预测的时间滞后了几百万年。

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