Channeling of Branched Flow in Weakly Scattering Anisotropic Media

When waves propagate through weakly scattering but correlated, disordered environments they are randomly focused into pronounced branchlike structures, a phenomenon referred to as branched flow, which has been studied in a wide range of isotropic random media. In many natural environments, however,...

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Veröffentlicht in:Physical review letters 2017-01, Vol.118 (2), p.024301-024301, Article 024301
Hauptverfasser: Degueldre, Henri, Metzger, Jakob J, Schultheis, Erik, Fleischmann, Ragnar
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Sprache:eng
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Zusammenfassung:When waves propagate through weakly scattering but correlated, disordered environments they are randomly focused into pronounced branchlike structures, a phenomenon referred to as branched flow, which has been studied in a wide range of isotropic random media. In many natural environments, however, the fluctuations of the random medium typically show pronounced anisotropies. A prominent example is the focusing of tsunami waves by the anisotropic structure of the ocean floor topography. We study the influence of anisotropy on such natural focusing events and find a strong and nonintuitive dependence on the propagation angle which we explain by semiclassical theory.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.118.024301