Radial Anisotropy in Receiver Function H−κ Stacks

IF 2.6 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Seismological Research Letters Pub Date : 2023-10-03 DOI:10.1785/0220230114
Brennan Brunsvik, Zachary Eilon
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Abstract

Abstract Receiver functions can be used to estimate the Moho depth (H) and ratio of P to S wavespeed (α/β or κ) in the crust. This is commonly done by grid search, forward modeling travel times to produce so-called “H-κ” stacks of receiver function amplitude. However, radial anisotropy in the crust, which can be significant, is almost never considered in this process. Here, we show that radial anisotropy changes the H-κ stack, biasing interpretations of crustal structure by introducing errors up to ∼3% in H and ∼1% in κ for commonly observed anisotropy magnitudes. We propose a simple method to correct H-κ stacks by incorporating radial anisotropy in the forward calculation. Synthetic tests show that this approach almost completely removes error caused by radial anisotropy. We show examples of this procedure with stations in the eastern United States. We provide readers with code to construct radially anisotropic H-κ stacks.
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接收函数H−κ堆栈的径向各向异性
摘要接收函数可以用来估计地壳中的莫霍深度(H)和P / S波速度(α/β或κ)之比。这通常是通过网格搜索,正演模拟旅行时间来产生所谓的接收函数振幅的“H-κ”堆栈来完成的。然而,在此过程中几乎从未考虑到地壳的径向各向异性,这可能是重要的。在这里,我们发现径向各向异性改变了H-κ叠加,通过在常见观测的各向异性震级中引入高达~ 3%的H和~ 1%的κ误差,使地壳结构的解释产生偏差。我们提出了一种简单的方法,通过将径向各向异性纳入正演计算来校正H-κ堆栈。综合试验表明,该方法几乎完全消除了径向各向异性引起的误差。我们以美国东部的电台为例,展示了这一过程。我们为读者提供了构建径向各向异性H-κ堆栈的代码。
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来源期刊
Seismological Research Letters
Seismological Research Letters 地学-地球化学与地球物理
CiteScore
6.60
自引率
12.10%
发文量
239
审稿时长
3 months
期刊介绍: Information not localized
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