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Earthquake rupture below the brittle-ductile transition in continental lithospheric mantle

机译:岩石圈地幔脆性-韧性转变以下的地震破裂

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摘要

Earthquakes deep in the continental lithosphere are rare and hard to interpret in our current understanding of temperature control on brittle failure. The recent lithospheric mantle earthquake with a moment magnitude of 4.8 at a depth of ~75 km in the Wyoming Craton was exceptionally well recorded and thus enabled us to probe the cause of these unusual earthquakes. On the basis of complete earthquake energy balance estimates using broadband waveforms and temperature estimates using surface heat flow and shear wave velocities, we argue that this earthquake occurred in response to ductile deformation at temperatures above 750°C. The high stress drop, low rupture velocity, and low radiation efficiency are all consistent with a dissipative mechanism. Our results imply that earthquake nucleation in the lithospheric mantle is not exclusively limited to the brittle regime; weakening mechanisms in the ductile regime can allow earthquakes to initiate and propagate. This finding has significant implications for understanding deep earthquake rupture mechanics and rheology of the continental lithosphere.
机译:在我们目前对脆性破坏的温度控制的理解中,大陆岩石圈深处的地震是罕见的,很难解释。怀俄明州克拉通最近发生的岩石圈地幔地震,震级为4.8,深度约为〜75 km,因此能使我们探究这些异常地震的成因。根据使用宽带波形的完整地震能量平衡估计值和使用表面热流和剪切波速度的温度估计值,我们认为,该地震是在750°C以上的温度下响应延性变形而发生的。高应力降,低破裂速度和低辐射效率均与耗散机制一致。我们的结果表明,岩石圈地幔中的地震成核不仅仅限于脆性区;延性机制中的弱化机制可以使地震开始并传播。这一发现对理解大陆岩石圈深层地震破裂力学和流变学具有重要意义。

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