Revealing the Secrets of the Western Mediterranean: A Deep Earthquake and the Overturned Slab

Daoyuan Sun, Meghan S. Miller
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Abstract

The Rif–Betics–Alboran region has been vital in the tectonic evolution of the western Mediterranean. Seismic images support the idea of continuous slab rollback being a prominent force in this region. However, the detailed slab structure and the physical mechanisms generating local deep (> 600 km) earthquakes remain unclear. Here, we analyze waveforms recorded from dense seismic networks above the deep earthquake beneath Granada in 2010 to study the slab structure. We discover a thin low-velocity layer (LVL) at the base of the slab to explain both the long codas observed in Morocco and the secondary arrivals observed in Spain. This LVL indicates the presence of hydrous magnesium silicates extending to ∼600 km depth, which suggests that dehydration embrittlement promotes the occurrence of deep-focus earthquakes. Our findings contradict the traditional slab model with the LVL sitting on the top of the slab, suggesting that the Alboran slab has been overturned.
揭开西地中海的秘密:深层地震和翻转的山体
Rif-Betics-Alboran 地区在地中海西部的构造演化中至关重要。地震图像支持板块持续回滚是该地区主要力量的观点。然而,详细的板块结构和产生局部深层(> 600 千米)地震的物理机制仍不清楚。在此,我们分析了 2010 年格拉纳达深层地震上方密集地震网络记录的波形,以研究板块结构。我们在板坯底部发现了一个薄薄的低速层(LVL),它可以解释在摩洛哥观测到的长暗震和在西班牙观测到的二次到达。该低速层表明存在延伸至 600 千米深处的含水镁硅酸盐,这表明脱水脆化促进了深焦点地震的发生。我们的发现与LVL位于板块顶部的传统板块模型相矛盾,表明阿尔伯兰板块已经发生了翻转。
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