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Reflection imaging of aseismic zones of the Nazca slab by global-phase seismic interferometry

机译:全球相位地震干涉法对纳斯卡平板地震带的反射成像

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摘要

Obtaining detailed images of aseismic parts of subducting slabs remains a large challenge for understanding slab dynamics. Hypocenter mapping cannot be used for the purpose due to the absence of seismicity, whereas the use of receiver functions might be compromised by the presence of melt. Global tomography can be used to identify the presence of the slab, but it does not reveal the structure in detail. We have determined how detailed images can be obtained using global-phase seismic interferometry. The method provides high-resolution (<15 km in depth) pseudo zero-offset (i.e., colocated source and receiver) reflection information. We have applied the method to aseismic zones of the Nazca slab in which initiation of possible slab tearing and plume decapitation was identified by global tomography and electrical conductivity, respectively. We have obtained an image of the Moho and the mantle and found an attenuated area in the image consistent with the presence of an aseismic dipping subducting slab. However, our interpretation was not unambiguous. The results confirmed that the method is useful for imaging aseismic transects of slabs.
机译:获得俯冲板的地震部分的详细图像仍然是理解板动力学的巨大挑战。由于没有地震作用,因此不能将震源测绘用于此目的,而接收器功能的使用可能会因融解物的存在而受到影响。整体断层扫描可用于识别平板的存在,但无法详细显示结构。我们已经确定了如何使用全局相位地震干涉法获得详细的图像。该方法提供了高分辨率(深度小于15 km)的伪零偏移(即源和接收器共置)反射信息。我们已将该方法应用于纳斯卡平板的抗震区,其中分别通过整体层析成像和电导率确定了可能的平板撕裂和羽流斩首。我们获得了莫霍面和地幔的图像,并发现图像中的衰减区域与抗震俯冲俯冲平板的存在一致。但是,我们的解释并非明确。结果证实该方法可用于平板的抗震断面成像。

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