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Semibrittle seismic deformation in high-temperature mantle mylonite shear zone along the Romanche transform fault

机译:沿romanche变换故障的高温型米隆岩剪力区半纤细地震变形

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Oceanic transform faults, a key element of plate tectonics, represent the first-order discontinuities along mid-ocean ridges, host large earthquakes, and induce extreme thermal gradients in lithosphere. However, the thermal structure along transform faults and its effects on earthquake generation are poorly understood. Here we report the presence of a 10- to 15-kilometer-thick in-depth band of microseismicity in 10 to 34 kilometer depth range associated with a high-temperature (700° to 900°C) mantle below the brittle lithosphere along the Romanche mega transform fault in the equatorial Atlantic Ocean. The occurrence of the shallow 2016 moment magnitude 7.1 supershear rupture earthquake and these deep microearthquakes indicate that although large earthquakes occur in the upper brittle lithosphere, a substantial amount of deformation is accommodated in the semibrittle mylonitic mantle that resides at depths below the 600°C isotherm. We also observe a rapid westward deepening of this band of seismicity indicating a strong lateral heterogeneity.
机译:海洋变换故障是板块构造的关键因素,代表中海脊,宿主大地震,并诱导岩石圈的极端热梯度。然而,沿着变换断层的热结构及其对地震生成的影响很差。在这里,我们将存在10至15公里厚的微震型在10至34公里的深度范围内的10至34公里的深度范围内,并且在罗密斯脆弱的岩石圈下方的高温(700°至900°C)搭桥中相关联赤道大西洋的Mega转换错误。浅2016矩大小7.1超级破裂地震的发生表明,虽然大地震发生在上脆性岩石圈中,但在半纤细的骨髓幔中容纳了大量变形,其位于600°C等温线以下深度。我们还观察到这一地震频段的快速深化,表明强烈的横向异质性。

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