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Tectonomorphic evolution of Marie Byrd Land – Implications for Cenozoic rifting activity and onset of West Antarctic glaciation

机译:Marie Byrd土地的细节演变 - 新生代饲养活动和西南极冰川发病的影响

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摘要

The West Antarctic Rift System is one of the largest continental rifts on Earth. Because it is obscured by the West Antarctic Ice Sheet, its evolution is still poorly understood. Here we present the first low-temperature thermochronology data from eastern Marie Byrd Land, an area that stretches ~ 1000 km along the rift system, in order to shed light on its development. Furthermore, we petrographically analysed glacially transported detritus deposited in the marine realm, offshore Marie Byrd Land, to augment the data available from the limited terrestrial exposures. Our data provide information about the subglacial geology, and the tectonic and morphologic history of the rift system. Dominant lithologies of coastal Marie Byrd Land are igneous rocks that intruded (presumably early Paleozoic) low-grade meta-sedimentary rocks. No evidence was found for un-metamorphosed sedimentary rocks exposed beneath the ice. According to the thermochronology data, rifting occurred in two episodes. The earlier occurred between ~ 100 and 60 Ma and led to widespread tectonic denudation and block faulting over large areas of Marie Byrd Land. The later episode started during the Early Oligocene and was confined to western Pine Island Bay area. This Oligocene tectonic activity may be linked kinematically to previously described rift structures reaching into Bellingshausen Sea and beneath Pine Island Glacier, all assumed to be of Cenozoic age. However, our data provide the first direct evidence for Cenozoic tectonic activity along the rift system outside the Ross Sea area. Furthermore, we tentatively suggest that uplift of the Marie Byrd Land dome only started at ~ 20 Ma; that is, nearly 10 Ma later than previously assumed. The Marie Byrd Land dome is the only extensive part of continental West Antarctica elevated above sea level. Since the formation of a continental ice sheet requires a significant area of emergent land, our data, although only based on few samples, imply that extensive glaciation of this part of West Antarctica may have only started since the early Miocene.
机译:西南极裂痕系统是地球上最大的大陆裂缝之一。因为它被西南冰冰板遮挡,它的进化仍然很清楚。在这里,我们介绍了来自东部Marie Byrd Land的第一个低温热量学数据,该区域沿着裂缝系统延伸〜1000公里,以阐明其发展。此外,我们分析了海上Marie Byrd Land的海洋境界中沉积的冰川运输的碎屑,从而增加了有限的地面暴露的数据。我们的数据提供了有关船舶地质的信息,以及裂口系统的构造和形态学史。沿海Marie Byrd土地的主导岩性是侵入(可能是早期古生代)低级元沉积岩石的火岩。没有发现在冰落下暴露的未变质沉积岩。根据Thermochronology数据,河流发生在两集中。早期发生在〜100和60 mA之间,并导致广泛的构造剥落和亚利亚德尔德土地大面积的断路。后来的少茂甙在早期开始,被限制在西部松树岛湾区。这种寡核苷类构造活性可以在以前描述的裂缝结构中环绕,以达到Bellingshausen海和松树岛冰川下面的裂缝结构,所有人都认为是新生代年龄。但是,我们的数据为罗斯海域外裂缝系统沿着裂口系统提供了第一个直接证据。此外,我们暂时表明玛丽布尔德土地圆顶的隆起只在〜20 ma开始;也就是说,比以前假设的近10 mA差。 Marie Byrd Land Dome是海拔大陆西南南极洲唯一广泛的部分。由于大陆冰板的形成需要大量的紧急土地面积,我们的数据虽然仅基于少量样品,但暗示西南极洲这一部分的广泛冰川可能仅启动自早期的内科。

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