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Regional aeromagnetic anomalies in Ellsworth Land: Crustal structure and Mesozoic microplate boundaries within West Antarctica

机译:埃尔斯沃思地的区域航磁异常:南极洲西部的地壳结构和中生代微板块边界

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The structural relationship between West Antarctic crustal blocks has remained uncertain due to a lack of information concerning sub‐ice crustal structure. A regional aeromagnetic reconnaissance of Ellsworth Land between 72 and 80°S and 65 and 100°W, completed as part of an integrated geophysical and geological investigation, provides the opportunity to study the ice‐covered area where several continental crustal blocks meet: Antarctic Peninsula, Thurston Island, Ellsworth‐Whitmore mountains and Haag Nunataks. The anomaly map is dominated by two major positive magnetic areas. Firstly, the Pacific Margin Anomaly (PMA) continues as a coastline‐parallel feature 100 km wide through Antarctic Peninsula and Thurston Island. The broad curvilinear anomaly with magnetic maxima of 200–600 nT is related to a mafic batholith and related intrusions and structures of the Pacific margin, mostly of Mesozoic age. Second, a zone of high intensity anomalies (200–1000 nT) of variable wavelengths (20–150 km) define an extensive area of highly magnetic Precambrian basement which is exposed at Haag Nunataks but is for the most part buried beneath ice and non‐magnetic cover. The geophysical data suggest that some of the crustal blocks have common structural features, their boundaries are more complex than originally thought and aeromagnetic provinces do not entirely correspond to the topographically defined boundaries of the crustal blocks. The Antarctic Peninsula and Thurston Island blocks are thought to have remained juxtaposed since the emplacement of the intrusive body related to the PMA. The Haag Nunataks Precambrian basement probably extends beneath the south and west margins of the Weddell Sea embayment and beneath the Ellsworth Mountains. The origin of long wavelength lineations beneath the Weddell Sea embayment is speculative. If they are related to Haag Nunataks Precambrian basement then the data offer insight into the trend of the Palaeozoic Ellsworth Mountain fold belt and support rotation models. Alternatively, if the anomalies are imaging break‐up related rifting trends, the lineations may provide extension and
机译:由于缺乏有关冰下地壳结构的信息,西南极地壳块之间的结构关系仍然不确定。作为综合地球物理和地质调查的一部分,在南纬72°和80°以及西经65°和100°之间对埃尔斯沃思地进行了区域航磁侦察,为研究几个大陆地壳块相遇的冰覆盖区域提供了机会:南极半岛,瑟斯顿岛,埃尔斯沃思-惠特莫尔山脉和哈格努纳塔克山脉。异常图主要由两个主要的正磁区主导。首先,太平洋边缘异常(PMA)继续作为100公里宽的海岸线平行特征,穿过南极半岛和瑟斯顿岛。磁极大值为200-600 nT的广泛曲线异常与太平洋边缘的镁铁质浴岩和相关侵入体和结构有关,主要是中生代。其次,一个波长可变(20-150公里)的高强度异常区(200-1000 nT)定义了一个广泛的高磁性前寒武纪基底区域,该基底暴露在Haag Nunataks,但大部分埋在冰和非磁性覆盖之下。地球物理数据表明,一些地壳块具有共同的结构特征,它们的边界比最初想象的要复杂得多,而且航磁省并不完全符合地壳块的地形界定边界。南极半岛和瑟斯顿岛区块被认为自与PMA有关的侵入体放置以来一直并列。Haag Nunataks 前寒武纪基底可能延伸到威德尔海海湾的南部和西部边缘下方以及埃尔斯沃思山脉下方。威德尔海海湾下方长波长线的起源是推测性的。如果它们与Haag Nunataks前寒武纪基底有关,那么这些数据可以深入了解古生代埃尔斯沃思山褶皱带的趋势和支撑旋转模型。或者,如果异常是与破裂相关的裂谷趋势,则线条可能提供延伸和

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