首页> 外文期刊>Tectonics >Laser-probe ~(40)Ar/~(39)Ar dating of strain fringes: Mid-Cretaceous synconvergent orogen-parallel extension in the interior of the Sevier orogen
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Laser-probe ~(40)Ar/~(39)Ar dating of strain fringes: Mid-Cretaceous synconvergent orogen-parallel extension in the interior of the Sevier orogen

机译:应变条纹的激光探针〜(40)Ar /〜(39)Ar测年:Sevier造山带内部的中白垩统共生造山带平行扩展

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UV and CO_2 laser-probe ~(40)Ar/~(39)Ar in situ analyses of phlogopite and muscovite in fibrous strain fringes from greenschist-facies metamorphic rocks document mica growth ages at temperatures lower than their closure temperatures, and therefore directly date deformation. The new dates resolve the age of the earliest ductile fabric recorded in the Raft River-Albion-Grouse Creek metamorphic core complex of Utah and Idaho. Phlogopite was dated in quartz-calcite-phlogopite strain fringes around pyrite in Pennsylvanian-Permian rocks from the Grouse Creek Mountains (Utah) using both the UV and CO_2 laser probe; muscovite was dated in quartz-muscovite strain fringes around pyrite in deformed Jurassic sills from the Black Pine Mountains (Idaho) using the CO_2 laser probe. Phlogopite ~(40)Ar/~(39)Ar ages for individual strain fringes (Grouse Creek Mountains) range from 92 Ma to 110 Ma, with the most reliable ages ranging from 101 Ma to 110 Ma (mean age, 105.0 ± 5.8 Ma). Muscovite ~(40)Ar/~(39)Ar ages for individual strain fringes (Black Pine Mountains) range from 97 Ma to 112 Ma (mean age, 104.7 ± 5.8 Ma). Strain fringes are associated with a subhorizontal foliation and a generally N-trending elongation lineation exhibiting components of top-to-the-north simple shear and coaxial strain accommodating N-S extension and subvertical shortening. Midcrustal northward flow at 105 (±6) Ma within the interior of the Sevier orogen, coeval with east-directed shortening in the foreland and with plate convergence, records orogen-parallel synconvergent extension. We favor gravitational relaxation of structural culminations resulting from focused crustal shortening as a driving mechanism for orogen-parallel flow.
机译:UV和CO_2激光探针〜(40)Ar /〜(39)Ar在绿片岩相变质岩纤维应变带中金云母和白云母的原位分析表明,在低于封闭温度的温度下云母的生长年龄,因此直接得出日期形变。新的日期解决了在犹他州和爱达荷州的Raft River-Albion-Grouse Creek变质核心复合物中记录的最早的韧性织物的年龄。使用紫外和二氧化碳激光探针,在格罗兹溪山脉(犹他州)的宾夕​​法尼亚-二叠纪岩石中,黄铁矿周围的石英-方解石-金云母应变带中标有金云母。白云母是用CO_2激光探针在黑松山(爱达荷州)变形的侏罗纪窗台中黄铁矿周围石英-白云母应变带中标出的。单个应变带(Grouse Creek山)的金云母〜(40)Ar /〜(39)Ar年龄在92 Ma至110 Ma之间,最可靠的年龄在101 Ma至110 Ma之间(平均年龄105.0±5.8 Ma) )。单个应变条纹(黑松山)的白云母〜(40)Ar /〜(39)Ar年龄范围为97 Ma至112 Ma(平均年龄104.7±5.8 Ma)。应变条纹与水平下叶和通常呈N趋势的延伸线有关,表现出从上到北的简单剪切和适应N-S延伸和垂直下移的同轴应变的分量。 Sevier造山带内部在105(±6)Ma的中地壳北向流动,与前陆中的东向缩短和板块汇聚同时发生,记录了造山带平行共生扩张。我们赞成由于地壳缩短而引起的结构顶点的重力松弛,将其作为造山带平行流动的驱动机制。

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