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Broadband ambient noise surface wave tomography across the United States

机译:全美国的宽带环境噪声表面波层析成像

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This study presents surface wave dispersion maps across the contiguous United States determined using seismic ambient noise. Two years of ambient noise data are used from March 2003 through February 2005 observed at 203 broadband seismic stations in the US, southern Canada, and northern Mexico. Cross-correlations are computed between all station-pairs to produce empirical Green functions. At most azimuths across the US, coherent Rayleigh wave signals exist in the empirical Green functions implying that ambient noise in the frequency band of this study (5–100 s period) is sufficiently isotropically distributed in azimuth to yield largely unbiased dispersion measurements. Rayleigh and Love wave group and phase velocity curves are measured together with associated uncertainties determined from the temporal variability of the measurements. A sufficient number of measurements (>2000) is obtained between 8 and 25 s period for Love waves and 8 and 70 s period for Rayleigh waves to produce tomographic dispersion maps. Both phase and group velocity maps are presented in these period bands. Resolution is estimated to be better than 100 km across much of the US from 8–40 s period for Rayleigh waves and 8–20 s period for Love waves, which is unprecedented in a study at this spatial scale. At longer and shorter periods, resolution degrades as the number of coherent signals diminishes. The dispersion maps agree well with each other and with known geological and tectonic features and, in addition, provide new information about structures in the crust and uppermost mantle beneath much of the US.
机译:这项研究提出了使用地震环境噪声确定的横跨美国的表面波频散图。从2003年3月到2005年2月,使用了两年的环境噪声数据,在美国,加拿大南部和墨西哥北部的203个宽带地震台站进行了观测。计算所有站对之间的互相关以产生经验格林函数。在美国的大多数方位上,经验格林函数中都存在相干的瑞利波信号,这表明本研究(5-100 s周期)频带内的环境噪声在方位上充分各向同性分布,从而可以产生很大的无偏差色散测量值。测量瑞利和洛夫波组和相速度曲线,以及根据测量的时间变化确定的相关不确定性。对于Love波,在8到25 s的周期之间,对于Rayleigh波,在8到70 s的周期之间,获得了足够数量的测量值(> 2000),以生成断层成像图。在这些周期带中都显示了相速度图和组速度图。据估计,在美国大部分地区,从瑞利波的8-40 s周期到爱波的8-20 s周期,其分辨率都优于100 km,这在此空间规模的研究中是前所未有的。在较长和较短的时间,分辨率会随着相干信号数量的减少而降低。散布图相互之间非常一致,并且具有已知的地质和构造特征,此外,它还提供了有关美国大部分地区地壳和最上层地幔结构的新信息。

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