Seismicity and Present-Day Crustal Deformation in the Southern Puna Plateau

IF 3.9 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Journal of Geophysical Research: Solid Earth Pub Date : 2024-12-22 DOI:10.1029/2024jb028918
Sankha Subhra Mahanti, Eric Kiser, Susan Beck, Amanda Hughes
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Abstract

The Southern Puna plateau in the central Andes has a complicated tectonic history that includes episodes of distributed shortening and extension, lithospheric delamination, uplift and Quaternary backarc volcanism. In this study, the upper crustal structure and present-day deformation in this area is investigated using a new regional earthquake catalog derived with a deep-learning-based phase picker. Results show abundant strike-slip seismicity at shallow depths in the eastern Southern Puna plateau that reveals active fault systems in the area and indicates N-S extension/E-W compression that changes orientation and relative magnitude from north to south. A broad zone of seismic quiescence in the western plateau may indicate a zone of upper crustal decoupling from large-scale deformation. The region separating the western and eastern plateau exhibits a complex stress field that can be related to the boundary of east/west oriented middle-to-lower crustal flow in the main volcanic arc. Southeast of the plateau in the Sierras Pampeanas, crustal seismicity deepens and is dominated by conjugate reverse faulting structures associated with the direction of plate convergence. Vp and Vs seismic velocity models of the upper crust obtained through local earthquake tomography with the improved seismic catalog show low-velocity anomalies near intermontane basins, except in the Antofagasta basin where a high-velocity anomaly possibly represents shallow intrusive component of Quaternary basaltic volcanism. Below the Cerro Galan caldera, an upper crustal 10-day long earthquake swarm is observed which may indicate local stress perturbations from fluids at the top of the crustal magmatic system that feeds this volcano.
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南普纳高原地震活动性与现今地壳变形
位于安第斯中部的南普纳高原具有复杂的构造史,包括分布的缩短和伸展、岩石圈拆沉、隆升和第四纪弧后火山作用。本文利用基于深度学习的相位拾取器建立了一个新的区域地震目录,研究了该地区的上地壳结构和现今变形。结果表明,南普纳高原东部浅层深部走滑地震活动丰富,显示该地区断层系统活动,表明南北向伸展/东西向挤压,方向和相对震级由北向南变化。西部高原广阔的地震静止带可能预示着上地壳与大范围形变的分离带。东西部高原分界区应力场复杂,可能与主火山弧东西向中下地壳流动边界有关。在高原东南部,地壳地震活动加深,并以与板块辐合方向相关的共轭逆断裂构造为主。利用改进的地震目录进行局部地震层析成像得到的上地壳Vp和Vs地震速度模型在山间盆地附近显示出低速异常,但在Antofagasta盆地,高速异常可能代表第四纪玄武岩火山作用的浅侵入成分。在Cerro Galan火山口下方,观察到一个长达10天的地壳上地震群,这可能表明来自地壳岩浆系统顶部流体的局部应力扰动,这些流体为火山提供了食物。
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来源期刊
Journal of Geophysical Research: Solid Earth
Journal of Geophysical Research: Solid Earth Earth and Planetary Sciences-Geophysics
CiteScore
7.50
自引率
15.40%
发文量
559
期刊介绍: The Journal of Geophysical Research: Solid Earth serves as the premier publication for the breadth of solid Earth geophysics including (in alphabetical order): electromagnetic methods; exploration geophysics; geodesy and gravity; geodynamics, rheology, and plate kinematics; geomagnetism and paleomagnetism; hydrogeophysics; Instruments, techniques, and models; solid Earth interactions with the cryosphere, atmosphere, oceans, and climate; marine geology and geophysics; natural and anthropogenic hazards; near surface geophysics; petrology, geochemistry, and mineralogy; planet Earth physics and chemistry; rock mechanics and deformation; seismology; tectonophysics; and volcanology. JGR: Solid Earth has long distinguished itself as the venue for publication of Research Articles backed solidly by data and as well as presenting theoretical and numerical developments with broad applications. Research Articles published in JGR: Solid Earth have had long-term impacts in their fields. JGR: Solid Earth provides a venue for special issues and special themes based on conferences, workshops, and community initiatives. JGR: Solid Earth also publishes Commentaries on research and emerging trends in the field; these are commissioned by the editors, and suggestion are welcome.
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