首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Receiver function analysis reveals layered anisotropy in the crust and upper mantle beneath southern Peru and northern Bolivia
【24h】

Receiver function analysis reveals layered anisotropy in the crust and upper mantle beneath southern Peru and northern Bolivia

机译:接收函数分析显示秘鲁南部和玻利维亚南部地壳和上部地幔中的层状各向异性

获取原文
获取原文并翻译 | 示例
           

摘要

Subduction systems play a key role in plate tectonics, but the deformation of the crust and uppermost mantle during continental subduction remains poorly understood. Observations of seismic anisotropy can provide constraints on dynamic processes in the crust and uppermost mantle in subduction systems. The subduction zone beneath Peru and Bolivia, where the Nazca plate subducts beneath South America, represents a particularly interesting location to study subduction-related deformation, given the along-strike transition from flat to normally dipping subduction. In this study we constrain seismic anisotropy within and above the subducting slab (including the overriding plate) beneath Pent and Bolivia by examining azimuthal variations in radial and transverse component receiver functions. Because anisotropy-aware receiver function analysis has good lateral resolution and depth constraints, it is complementary to previous studies of anisotropy in this region using shear wave splitting or surface wave tomography. We examine data from long-running permanent stations NNA (near Lima, Peru) and LPAZ (near La Paz, Bolivia), and two dense lines of seismometers from the PULSE and CAUGHT deployments in Pent and Bolivia, respectively. The northern line overlies the Peru flat slab, while the southern line overlies the normally dipping slab beneath Bolivia. We applied harmonic decomposition modeling to constrain the presence, depth, and characteristics of dipping and/or anisotropic interfaces within the crust and upper mantle. We found evidence for varying multi-layer anisotropy, in some cages with dipping symmetry axes, underneath both regions. The presence of multiple layers of anisotropy with distinct geometries that change with depth suggests a highly complex deformation regime associated with subduction beneath the Andes. In particular, our identification of depth-dependent seismic anisotropy within the overlying plate crust implies a change in deformation geometry, dominant m
机译:俯冲系统在板构造中发挥着关键作用,但大陆俯冲期间的地壳和最上面的地幔的变形仍然很差。地震各向异性的观察可以为俯冲系统中的地壳和最上面的地幔提供限制。秘鲁和玻利维亚下面的俯冲区,南美洲下方的纳斯卡板电影层,代表了研究郊区与潜水相关的变形的特别有趣的位置,因为沿着平面到通常浸渍俯冲。在该研究中,我们通过检查径向和横向组件接收器功能中的方位角变化来限制在PET和玻利维亚下方和玻利维亚下方和上方的地震各向异性。由于各向异性感知的接收器功能分析具有良好的横向分辨率和深度约束,因此使用剪切波分裂或表面波断层扫描来互补地对该区域的各向异性研究。我们研究了从长期运行的永久站NNA(近马,秘鲁)和LPAZ(靠近La Paz,Bolivia)以及来自脉冲的两条密集线的数据分别从脉冲和玻利维亚捕获部署。北极线覆盖秘鲁平板板,而南线则覆盖玻利维亚的常浸板。我们应用谐波分解建模以限制浸渍和/或地壳内浸渍和/或各向异性界面的存在,深度和特性。我们发现了不同多层各向异性的证据,其中一些笼子在两个区域下方的对称轴。多层各向异性的存在具有与深度改变的不同几何形状的不同几何形状表明,与ANDES下方的俯冲相关的高度复杂的变形制度。特别是,我们对覆盖板地壳内的深度依赖地震各向异性的识别意味着变形几何形状的变化,显性M

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号