Green’s function retrieval from deterministic seismic wavefield using higher-order cross-correlation

Yunfeng Chen, E. Saygin
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Abstract

Summary Seismic interferometry, commonly known as empirical Green’s function retrieval in seismology, has been widely applied to extract the impulse response of Earth. The conventional approach based on cross-correlation of long-term ambient seismic wavefield relies on the simultaneous recording of noise signals at seismic receivers. Recent studies have demonstrated observationally that the correlation of coda of (ambient noise) cross-correlation function (C3) enables the reconstruction of inter-station Green’s function regardless of the operating time (i.e., synchronous or asynchronous) of stations. Here we extend the C3 scheme to a more general framework that involves the correlation of cross-correlation function (C2). This new approach exploits the deterministic energy of the wavefield and is more robust than C3 that may suffer from incoherent coda wave energy due to less ideal (e.g., sparse, noisy, short duration) network configurations. We apply this technique to the recently deployed ALFREX seismic network in southwestern Australia. We show that the Green’s function between asynchronous stations can be robustly recovered using the C2 approach whereas this is not feasible from C3. The proposed technique can effectively bridge the temporal gaps between temporary networks and demonstrate great potential for improving the spatial coverage of data and resolution in seismic imaging of crustal structures.
基于高阶互相关的确定性地震波场格林函数检索
地震干涉测量技术在地震学中被称为经验格林函数检索,已被广泛应用于提取地球的脉冲响应。传统的基于长期环境地震波场互相关的方法依赖于地震接收机同时记录噪声信号。最近的研究从观测上证明,(环境噪声)互相关函数(C3)尾数的相关性,使得无论站间运行时间(即同步或异步)如何,都可以重建站间格林函数。在这里,我们将C3方案扩展到一个更一般的框架,该框架涉及相互关联函数(C2)的相关性。这种新方法利用了波场的确定性能量,并且比由于不太理想(例如,稀疏,噪声,持续时间短)网络配置而可能遭受非相干尾波能量的C3更健壮。我们将这项技术应用于最近在澳大利亚西南部部署的ALFREX地震台网。我们表明,使用C2方法可以鲁棒地恢复异步站点之间的格林函数,而这在C3中是不可行的。该技术可以有效地弥补临时网络之间的时间差距,在提高地壳结构地震成像数据的空间覆盖和分辨率方面具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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