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- W2004650178 abstract "This is the second of a pair of papers considering acoustic multiple scattering and localization in fluid-saturated porous solids. Such systems are represented by the Biot effective medium, and spatially $ensuremath{delta}$-function correlated disorder is incorporated by replica-field methods. In the companion paper it was shown that a preferred form of the wavelength-scale scattering operator, coupling primarily to slow waves, is selected by a universal renormalization-group flow toward strong coupling. The simplification afforded by a single scattering interaction is used here to define both Ginzburg-Landau and coherent-potential descriptions of the localized density of states. It is found that, as long as the Biot medium is the appropriate background, a description of localized slow and extended fast waves is possible, but that fast waves may not localize within the weak-coupling limits of the models. Further, coupling between slow and fast waves contributes an apparent dissipation that can inhibit slow wave localization. Finally, relations are found between fast-wave coherence length and the slow noise spectrum, which make fast waves a potential probe of a slow-localized volume." @default.
- W2004650178 created "2016-06-24" @default.
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- W2004650178 date "2001-08-29" @default.
- W2004650178 modified "2023-09-26" @default.
- W2004650178 title "Resonant scattering and localization in heterogeneous Biot media" @default.
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- W2004650178 doi "https://doi.org/10.1103/physrevb.64.134203" @default.
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