Structure of the crust and upper mantle in Greenland and northeastern Canada: Insights from anisotropic rayleigh-wave tomography

IF 2.8 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Geophysical Journal International Pub Date : 2024-08-02 DOI:10.1093/gji/ggae269
Parviz Ajourlou, Fiona Darbyshire, Pascal Audet, Glenn A Milne
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Abstract

Summary Seismic velocity models provide important constraints on Greenland’s deep structure, which, in turn, has profound implications for our understanding of the tectonic history of this region. However, the resolution of seismic models has been limited by a sparse network, particularly in northern and central Greenland. We address these limitations by generating new high-resolution Rayleigh-wave phase velocity maps encompassing Greenland and northeastern Canada by processing over three decades of teleseismic earthquake records and incorporating recently added stations in Greenland and Arctic Canada. These phase velocity maps are sensitive to structure from the lower crust down to the sub-lithospheric mantle (25-185 s period). We find significant heterogeneity and a strong correlation between isotropic and anisotropic seismic velocities with inferred geological structure. High seismic velocities associated with cratonic lithosphere are broadly divided into two regions, with a belt of reduced velocity spanning central Greenland, which we interpret as lithospheric erosion resulting from interaction between the Greenland continental keel and the Iceland plume. Within each region, we identify tectonic subdivisions that suggest fundamental differences between the blocks that make up Precambrian Greenland. In the south, the North Atlantic craton (NAC) has a high-velocity keel exhibiting anisotropic stratification. Between the NAC and the cratonic lithosphere further north, the Proterozoic Nagssugtoqidian orogenic belt shows a distinct signature of reduced seismic velocity to ∼75 s period, but then appears to pinch out at depth. The northern Greenland lithosphere exhibits significant isotropic heterogeneity, with a distinct core of high velocities in the northwest (∼55-75 s period) giving way to a set of distinct east-west trending high-velocity belts at longer periods. At all periods sensitive to the lithospheric mantle in this region, anisotropic fast orientations are E-W, consistent with a north-south Precambrian assembly of the Greenland shield. In contrast to the NAC, there is no evidence of anisotropic stratification in the northern part of the cratonic keel. Based on both isotropic and anisotropic phase-velocity anomalies, we suggest that the Phanerozoic Caledonian and Ellesmerian-Franklinian fold belts are relatively thin-skinned features onshore Greenland, though the Caledonian belt may have a stronger signature off the east coast. At the longest periods, a prominent low-velocity anomaly initially centred on Iceland migrates northwards and spreads beneath central-eastern Greenland. Coupled with NW-SE trending anisotropy, this feature is interpreted as the effect of mantle flow radiating outward from the Iceland plume and interacting with the eroded Greenland lithosphere.
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格陵兰岛和加拿大东北部的地壳和上地幔结构:各向异性射线波层析成像的启示
摘要 地震速度模型为格陵兰的深部结构提供了重要的约束条件,这反过来又对我们了解该地区的构造历史产生了深远的影响。然而,地震模型的分辨率一直受到稀疏网络的限制,尤其是在格陵兰岛北部和中部。我们通过处理三十多年的远震地震记录,并结合格陵兰岛和加拿大北极地区最近新增的台站,生成了涵盖格陵兰岛和加拿大东北部的新的高分辨率射线波相位速度图,从而解决了这些局限性。这些相速度图对从下地壳到岩石圈下地幔(25-185 秒周期)的结构非常敏感。我们发现各向同性和各向异性地震速度与推断地质结构之间存在明显的异质性和很强的相关性。与板块岩石圈相关的高地震速度大致分为两个区域,其中一个速度降低带横跨格陵兰岛中部,我们将其解释为格陵兰大陆龙骨和冰岛羽流相互作用造成的岩石圈侵蚀。在每个区域内,我们都确定了构造分区,这些分区表明构成前寒武纪格陵兰岛的地块之间存在根本差异。在南部,北大西洋陨石坑(NAC)有一个高速龙骨,表现出各向异性的分层。在北大西洋克拉通和更北的板块岩石圈之间,新生代的纳格苏格托基底造山带显示出明显的地震速度减弱特征,减弱到 75 秒周期,但随后似乎在深处出现了夹层。格陵兰岛北部岩石圈表现出明显的各向同性异质性,西北部(55-75 秒周期)有一个明显的高速度核心,而在更长的周期内则有一组明显的东西向高速度带。在该区域岩石圈地幔的所有敏感期,各向异性的快速方向均为东西向,这与格陵兰地盾的南北向前寒武纪组装相一致。与 NAC 相反,在板块龙骨的北部没有各向异性分层的证据。根据各向同性和各向异性相速度异常,我们认为新生代喀里多尼亚褶皱带和埃勒斯梅里亚-弗兰科林褶皱带是格陵兰岛陆地上相对薄的地貌,尽管喀里多尼亚褶皱带在东海岸可能有更强的特征。在最长的时期,最初以冰岛为中心的一个突出的低速异常向北迁移,并扩散到格陵兰岛中东部的下方。加上西北-东南走向的各向异性,这一特征被解释为地幔流从冰岛羽流向外辐射并与侵蚀的格陵兰岩石圈相互作用的结果。
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来源期刊
Geophysical Journal International
Geophysical Journal International 地学-地球化学与地球物理
CiteScore
5.40
自引率
10.70%
发文量
436
审稿时长
3.3 months
期刊介绍: Geophysical Journal International publishes top quality research papers, express letters, invited review papers and book reviews on all aspects of theoretical, computational, applied and observational geophysics.
期刊最新文献
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