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格林函数提取中虚假波至的消除与广义光学定理

Cancellation of spurious arrivals in Green's function extraction and the generalized optical theorem.

作者信息

Snieder Roel, van Wijk Kasper, Haney Matt, Calvert Rodney

机构信息

Center for Wave Phenomena and Department of Geophysics, Colorado School of Mines, Golden, Colorado 80401, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Sep;78(3 Pt 2):036606. doi: 10.1103/PhysRevE.78.036606. Epub 2008 Sep 18.

Abstract

The extraction of the Green's function by cross correlation of waves recorded at two receivers nowadays finds much application. We show that for an arbitrary small scatterer, the cross terms of scattered waves give an unphysical wave with an arrival time that is independent of the source position. This constitutes an apparent inconsistency because theory predicts that such spurious arrivals do not arise, after integration over a complete source aperture. This puzzling inconsistency can be resolved for an arbitrary scatterer by integrating the contribution of all sources in the stationary phase approximation to show that the stationary phase contributions to the source integral cancel the spurious arrival by virtue of the generalized optical theorem. This work constitutes an alternative derivation of this theorem. When the source aperture is incomplete, the spurious arrival is not canceled and could be misinterpreted to be part of the Green's function. We give an example of how spurious arrivals provide information about the medium complementary to that given by the direct and scattered waves; the spurious waves can thus potentially be used to better constrain the medium.

摘要

如今,通过对两个接收器记录的波进行互相关来提取格林函数有很多应用。我们表明,对于任意小的散射体,散射波的交叉项会给出一个非物理波,其到达时间与源位置无关。这构成了一个明显的不一致性,因为理论预测在对完整的源孔径进行积分后,不会出现这种虚假的到达情况。通过在驻相近似下对所有源的贡献进行积分,可以解决任意散射体的这种令人困惑的不一致性,以表明源积分的驻相贡献借助广义光学定理抵消了虚假到达。这项工作构成了该定理的另一种推导。当源孔径不完整时,虚假到达不会被抵消,可能会被误解为格林函数的一部分。我们给出一个例子,说明虚假到达如何提供与直达波和散射波所提供的关于介质的信息互补的信息;因此,虚假波有可能被用于更好地约束介质。

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