High-resolution seismic tomography of the transition zone from normal to flat slab subduction in central Chile: Implications for volcanoes, plate coupling and flat subduction

IF 4.8 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Lei Gao , Zixin Chen , Ying Liu , Haijiang Zhang , Jiashun Hu , Diana Comte , Francisco Hernán Ortega Culaciati
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Abstract

To better understand factors controlling the distribution of volcanoes, plate coupling along the subducting plate interface, and the transition from normal to flat slab subduction, we have determined high-resolution Vp, Vs and Vp/Vs models in the central Chile subduction zone where normal slab subduction transits to flat slab subduction. In the study region spanning latitudes of 22° to 31°S, volcanoes to the north of latitude 25.5°S are underlaid by intensive intermediate-depth earthquakes, but those to the south are correlated with very few. Based on velocity features, we proposed that volcanoes to the north are likely caused by partial melting of mantle wedge by incorporation of fluids released during the dehydration reactions of various hydrous minerals in the slab that are responsible for inducing intermediate-depth earthquakes, while volcanoes to the south are likely caused by sub-slab hot materials migrating upwards through the tear or gap due to the transition from normal subduction to flat subduction. Along the plate surface constructed based on our inverted velocity models and relocated earthquakes, higher plate coupling is spatially correlated with lower Vp/Vs values and fewer earthquakes, whereas lower plate coupling is correlated with relatively higher Vp/Vs values and intensive small earthquakes. These features suggest that the plate coupling state is controlled by the existence of fluids along the plate interface, with high degree of fluids reducing plate coupling and causing the creep deformation. In the region where the flat slab subduction is evident, there exist apparent high velocity anomalies above the intraslab seismicity. This indicates that some buoyant materials such as oceanic plateaus, aseismic ridges and seamount chains that featured high velocity anomalies were subducted with the slab and caused the nominal flat subduction.
智利中部正向平板俯冲过渡带的高分辨率地震层析成像:对火山、板块耦合和平板俯冲的影响
为了更好地了解控制火山分布、沿俯冲板块界面的板块耦合以及从正向平板俯冲过渡的因素,我们在智利中部正向平板俯冲过渡的俯冲带建立了高分辨率的Vp、Vs和Vp/Vs模型。在横跨纬度22°~ 31°S的研究区域,纬度25.5°S以北的火山被强烈的中深度地震所覆盖,而以南的火山则很少与地震相关。基于速度特征,我们认为北部的火山可能是由于板块中各种含水矿物在脱水反应过程中释放的流体与地幔楔的部分熔融结合而形成的,而南部的火山可能是由于板块下热物质从正常俯冲向平俯冲过渡而通过撕裂或间隙向上迁移而形成的。沿倒置速度模型构造的板块表面,高板块耦合与Vp/Vs值较低、地震较少相关,而低板块耦合与相对较高的Vp/Vs值和强烈的小地震相关。这些特征表明,板的耦合状态受沿板界面存在的流体的控制,高流体的存在降低了板的耦合,造成了板的蠕变。在平板俯冲作用明显的地区,岩内地震活动上方存在明显的高速异常。这表明具有高速异常特征的海洋高原、地震脊和海山链等浮力物质随板块俯冲,形成名义上的平俯冲。
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来源期刊
Earth and Planetary Science Letters
Earth and Planetary Science Letters 地学-地球化学与地球物理
CiteScore
10.30
自引率
5.70%
发文量
475
审稿时长
2.8 months
期刊介绍: Earth and Planetary Science Letters (EPSL) is a leading journal for researchers across the entire Earth and planetary sciences community. It publishes concise, exciting, high-impact articles ("Letters") of broad interest. Its focus is on physical and chemical processes, the evolution and general properties of the Earth and planets - from their deep interiors to their atmospheres. EPSL also includes a Frontiers section, featuring invited high-profile synthesis articles by leading experts on timely topics to bring cutting-edge research to the wider community.
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