Rheological contrast traps and controls MW 6.8 Michilla (northern Chile) intraslab aftershocks

IF 4.6 1区 地球科学 Q1 GEOLOGY
Geology Pub Date : 2026-04-24 DOI:10.1130/g53833.1
Francisco Pastén-Araya, Sebastián Carrasco, Catalina Morales-Yáñez, Efraín Rivera, Leoncio Cabrera, Sergio Ruiz, Pablo Salazar
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引用次数: 0

Abstract

The factors controlling the extent and distribution of aftershocks in intermediate-depth earthquakes remain poorly understood, largely due to the scarcity of dense seismological networks and high-resolution seismic catalogs. Between 2013 and 2015 CE, a temporary dense seismic network installed in northern Chile allowed the detailed monitoring of a peculiar, long-lasting aftershock sequence confined within the rupture zone of the 16 December 2007 MW 6.8 Michilla intermediate-depth earthquake, located within the subducting oceanic plate. This unique dataset allowed us to compile a high-resolution seismic catalog and to analyze the possible factors that influence this type of rupture. Our results show that seismicity was trapped between the upper and lower oceanic crust, correlating strongly with expected dehydration reactions in basaltic and gabbroic rheologies. In addition, aftershocks were distributed across a complex multi-fault system, which can remain active for an extended period through the same dehydration process. These observations provide new constraints on the mechanics of intermediate-depth rupture and highlight the role of dehydration-driven processes in controlling their seismic behavior, with implications for seismic hazard in subduction zones.
流变对比捕获并控制了里氏6.8级Michilla(智利北部)岩壁内余震
控制中深度地震余震程度和分布的因素仍然知之甚少,这主要是由于缺乏密集的地震台网和高分辨率的地震目录。在2013年至2015年间,在智利北部安装了一个临时密集地震网络,可以详细监测2007年12月16日发生在大洋板块内的里氏6.8级Michilla中深度地震的破裂带内的一个特殊的、持久的余震序列。这个独特的数据集使我们能够编制一个高分辨率的地震目录,并分析影响这种破裂类型的可能因素。结果表明,地震活动性被困在上下洋壳之间,与玄武岩和辉长岩流变学中预期的脱水反应密切相关。此外,余震分布在一个复杂的多断层系统中,该系统可以通过相同的脱水过程在较长时间内保持活跃。这些观测结果为中深度破裂机制提供了新的约束条件,并强调了脱水驱动过程在控制其地震行为方面的作用,这对俯冲带的地震危险性具有重要意义。
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来源期刊
Geology
Geology 地学-地质学
CiteScore
10.00
自引率
3.40%
发文量
228
审稿时长
6.2 months
期刊介绍: Published since 1973, Geology features rapid publication of about 23 refereed short (four-page) papers each month. Articles cover all earth-science disciplines and include new investigations and provocative topics. Professional geologists and university-level students in the earth sciences use this widely read journal to keep up with scientific research trends. The online forum section facilitates author-reader dialog. Includes color and occasional large-format illustrations on oversized loose inserts.
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