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Rapid exhumation of lower crust during continent-continent collision and late extension: Evidence from 40Ar/39Ar incremental heating of hornblendes and muscovites, Caledonian orogen, western Norway

机译:大陆-大陆碰撞和晚期伸展过程中下地壳的快速掘出:挪威西部加里东造山带角bl和麝香的40Ar / 39Ar增量加热的证据

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摘要

Resolving enigmatic aspects of the age relations of deep crustal rocks in the Bergen Arcs area provides key insights into the controversial tectonic evolution of the Caledonian orogen in western Norway. In the Bergen Arcs area, eclogites of the lower crustal Lindås nappe (upper plate) structurally overlie eclogite-bearing basement gneiss of the Western Gneiss region (lower plate) across the Bergen Arcs shear zone. Laser 40Ar/39Ar incremental heating data for hornblendes and muscovites on mineral separates, in tandem with detailed thermobarometry and structural observations, allow evaluation of the tectonic cooling and exhumation histories of the deep crustal rocks as well as offset and movement history across tectonic boundaries. In the Lindås nappe the eclogites formed at 700 °C and pressures >17 kbar. Hornblende and three separate muscovite grains from a single eclogite sample reveal well-defined 40Ar/39Ar isotope plateaus at 447.7 ± 4.2, 432.6 ± 0.5, 429.2 ± 0.9, and 429.5 ± 0.6 Ma (2 errors given here and below), respectively, indicating relatively rapid cooling of the high-pressure rocks (10–15 °C/m.y.). Apparently older plateau ages from muscovites from other eclogites at 451.3 ± 1.1 and 462.6 ± 0.8 Ma may be related to indiscernible excess argon. High-grade amphibolites (690 °C, 8–12 kbar) of the Lindås nappe yield ages of 439.3 ± 3.5 and 455.4 ± 1.5 Ma. In contrast, hornblende from gneiss in the adjacent Western Gneiss region (670 °C, 8 kbar) to the east across the Bergen Arcs shear zone reveal plateau ages of 409.3 ± 2.7 and 394.8 ± 2.2 Ma, similar to other hornblende and muscovite 40Ar/39Ar dates in the Western Gneiss region immediately to the north. To the west of the Lindås nappe allochthonous basement gneiss of the Øygarden Gneiss complex (670 °C, 8 kbar) yields a plateau age of 408.1 ± 3.4 Ma. The temperature estimates from all the samples analyzed are above the closure temperatures for hornblende and muscovite and thus indicate that the argon ages reflect cooling after peak metamorphic conditions. The argon ages for the high-pressure eclogites of the Lindås nappe imply extreme crustal thickening (>50 km) prior to ca. 450 Ma. Together the data indicate that subduction of lowermost continental crust, possibly related to continent-continent collision, occurred early (ca. 450 Ma) in the tectonic evolution of the orogen, leading to the development and exhumation of the lower crustal eclogites and high-grade amphibolites within the Lindås nappe (between 450 and 430 Ma). In contrast, the high-pressure eclogites of the Western Gneiss region, which may have formed significantly later (ca. 425 Ma), were exhumed and cooled along with the basement gneiss late in the history of the orogen (ca. 400 Ma). The 40 m.y. offset across the Bergen Arcs shear zone, which separates the Lindås nappe (upper plate) and the Western Gneiss region (lower plate), is consistent with extensional movement along the fault resulting in the rapid exhumation and cooling of the region late in the tectonic evolution of the orogen (ca. 400 Ma). Thus, the deep crustal rocks in the overlying Caledonian nappes in western Norway appear to have been cooled and exhumed rapidly related to continent-continent collision during a predominantly contractional phase early in the tectonic evolution of the orogen, whereas lower crustal rocks of the underlying basement appear to have been exhumed extremely rapidly, coincident with late orogenic to postorogenic extension. Temporally and possibly tectonically distinct mechanisms are illustrated for the exhumation of deep crust within the tectonic evolution of a continent-continent collisional orogen.
机译:解决卑尔根弧区深地壳 岩石的年龄关系的神秘方面,可提供对 中古苏格兰造山带的 构造演化的关键见解。挪威西部。在卑尔根弧区,下部 地壳Lindås棉布(上部板块)的榴辉岩在结构上覆盖了西部片麻岩地区的含榴辉岩的基底片麻岩 (下图)穿过Bergen Arcs剪切带。激光 40 Ar / 39 Ar 增量加热数据,用于矿物 分离物中的角bl和麝香与详细的热压法相结合以及结构性的 观测,可以评估深地壳岩石的构造降温和发掘历史,以及横跨构造边界的偏移和运动 历史。在Lindås纳普 中,榴辉岩在700°C和压力> 17 kbar的条件下形成。 Hornblende和来自单个 榴辉岩样品的三个独立的白云母晶粒显示定义明确的 40 Ar / 39 Ar同位素高原 在447.7±4.2、432.6±0.5、429.2±0.9, 和429.5±0.6 Ma(分别在此处和以下给出2个误差), 表示高压岩石的相对快速冷却 (10-15°C / my) 。来自其他榴辉岩的 莫斯科高原的高原年龄明显较高,可能与不可识别的过量氩有关。 高品位 Lindås尿布的闪石(690°C,8-12 kbar)的屈服年龄为439.3±3.5和455.4 ±1.5 Ma。相比之下,横跨卑尔根弧形剪切带的 相邻西部片麻岩地区(670°C,8 kbar)片麻岩的角闪石揭示了高原年龄409.3 ±2.7和394.8±2.2 Ma,类似于西片麻岩中的其他角闪石 和白云母 40 Ar / 39 Ar日期区域 到北方。在Øygarden片麻岩复合体中的Lindås尿布异质地下 基底片麻岩(670°C, 8 kbar)产生的高原年龄为408.1±3.4 Ma。 分析的所有样品的温度估算值均 高于角闪石和白云母的封闭温度 ,因此表明氩气年龄反映了之后的冷却。最高峰变质条件。 Lindås尿布的高压 榴辉岩的氩气年龄暗示着大约在大约50 km之前极地壳增厚 (> 50 km)。 450毫安。数据共同表明, 可能是与大陆-大陆碰撞有关的最低大陆壳俯冲发生在早期(约450 Ma) 。造山带的构造演化,导致Lindås俯冲带(在450和 闪石的发育和发掘> 430 Ma)。相比之下,西部 片麻岩地区的高压榴辉岩,可能已经形成得很晚(约 425 Ma),与地下片麻岩一起被挖出并冷却。 是造山带历史上的晚期(约400 Ma)。横跨卑尔根弧形剪切带的40 my 偏移量,该区域将 Lindås推覆物(上板)和Western Gneiss地区 (下板)分开,与沿 的断层伸展运动一致,导致造山带构造演化后期(约400 sup> Ma)。因此,在挪威西部上覆加里东尼亚 纳普斯的深地壳岩石似乎已被冷却并发掘出 ,主要与 期间的大陆-大陆碰撞有关。 sup>造山带构造演化的早期收缩期, ,下层基底的下地壳岩出现 的速度非常快,与 < / sup>造山带到造山带的延伸。为大陆大陆 碰撞造山带的构造演化过程中深地壳的发掘 阐明了在时间上和可能在构造上不同的机制。

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  • 来源
    《GSA Bulletin》 |1996年第11期|1425-1437|共13页
  • 作者单位

    Department of Geological Sciences, 1006 C. C. Little Building, University of Michigan, Ann Arbor, Michigan 48109-1063;

    Department of Geological Sciences, 1006 C. C. Little Building, University of Michigan, Ann Arbor, Michigan 48109-1063;

    Department of Geological Sciences, 1006 C. C. Little Building, University of Michigan, Ann Arbor, Michigan 48109-1063;

    Mineralogisk-Geologisk Museum, Sarsgate 1, N-0562 Oslo 5, Norway;

    Department of Geological Sciences, 1006 C. C. Little Building, University of Michigan, Ann Arbor, Michigan 48109-1063;

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