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Recursive Green functions technique applied to the propagation of elastic waves in layered media

机译:递归格林函数技术应用于弹性波在分层介质中的传播

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Guided by similarities between electronic and classical waves, a numerical code based on a formalism proven to be very effective in condensed matter physics has been developed, aiming to describe the propagation of elastic waves in stratified media (e.g. seismic signals). This so-called recursive Green function technique is frequently used to describe electronic conductance in mesoscopic systems. It follows a space-discretization of the elastic wave equation in frequency domain, leading to a direct correspondence with electronic waves travelling across atomic lattice sites. An inverse Fourier transform simulates the measured acoustic response in time domain. The method is numerically stable and computationally efficient. Moreover, the main advantage of this technique is the possibility of accounting for lateral inhomogeneities in the acoustic potentials, thereby allowing the treatment of interface roughness between layers. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 3]
机译:在电子波和经典波之间的相似性的指导下,已经开发出一种基于形式论的数字代码,该数字代码被证明在凝聚态物理中非常有效,旨在描述弹性波在分层介质(例如地震信号)中的传播。这种所谓的递归格林函数技术经常用于描述介观系统中的电子电导。它遵循弹性波方程在频​​域中的空间离散化,从而导致与穿过原子晶格位点传播的电子波直接对应。傅立叶逆变换在时域中模拟测得的声学响应。该方法在数值上稳定且计算效率高。此外,该技术的主要优点是可以解决声势中的横向不均匀性,从而可以处理层之间的界面粗糙度。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:3]

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