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Causality analysis of frequency-dependent wave attenuation

机译:频率相关波衰减的因果关系分析

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The work is inspired by thermo-and photoacoustic imaging, where recent efforts are devoted to take into account attenuation and varying wave speed parameters. In this paper, we derive and analyze causal equations describing the propagation of attenuated pressure waves. We also review standard models, like frequency power laws, and the thermo-viscous equation and show that they lack causality in the parameter range relevant for biological photoacoustic imaging. To discuss causality in mathematical rigor we use the results and concepts of linear system theory. We present some numerical experiments, which show the physically unmeaningful behavior of standard attenuation models, and the realistic behavior of the novel models.
机译:这项工作的灵感来自热声和光声成像,最近的努力致力于考虑衰减和变化的波速参数。在本文中,我们推导并分析了描述衰减压力波传播的因果方程。我们还回顾了标准模型,例如频率幂定律和热粘方程,并表明它们在与生物光声成像相关的参数范围内缺乏因果关系。为了讨论严格的数学因果关系,我们使用线性系统理论的结果和概念。我们提出了一些数值实验,这些实验显示了标准衰减模型的物理上无意义的行为以及新型模型的现实行为。

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