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Titlebook: Wave Scattering in Complex Media: From Theory to Applications; Proceedings of the N Bart A. Tiggelen,Sergey E. Skipetrov Conference proceed

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Coherent Effects in the Multiple Scattering of Light in Random Mediaquantum diffusion is defined and calculated up to the contribution of the cooperon. We show that there are additional corrections at the order of the cooperon which restore the normalization of the probability. We study also the angular and temporal (diffusive wave spectroscopy) correlation function
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Mesoscopic Dynamicsal waves. Nonetheless, in samples in which the wave is not inelastically scattered, the wave is temporally coherent. As a result, the intensity is correlated over distances much greater than the wavelength scale in which the field loses coherence. In such mesoscopic samples, local fluctuations in in
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Mesoscopic Dynamicsal waves. Nonetheless, in samples in which the wave is not inelastically scattered, the wave is temporally coherent. As a result, the intensity is correlated over distances much greater than the wavelength scale in which the field loses coherence. In such mesoscopic samples, local fluctuations in in
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Diffusing Acoustic Wave Spectroscopy: Field Fluctuation Spectroscopy with Multiply Scattered Ultrasoering media and studying mesoscopic wave phenomena. The principles underlying DAWS are described and illustrated with measurements of the particle velocity fluctuations in fluidized suspensions. Two examples of the potential of DAWS for elucidating mesoscopic wave physics are presented: understandin
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Intensity Correlations and Fluctuations of Waves Transmitted through Random Mediae fluctuations are practically independent of the sample length, the correlations present an unexpected strong dependence on the length of the disordered region. Interestingly, we show that the long range correlations .. and .. usually associated with intensity and conductance fluctuations, respecti
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Spectral Coherence of Wave Fields in Random Mediaath integral technique and, being universal with respect to the dimensionality of the system, accounts explicitly for the correlation properties of the disorder. The general theory is applied to the evaluation of a two-frequency mutual coherence function, which is an important quantity in itself, an
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Spectral Coherence of Wave Fields in Random Mediaath integral technique and, being universal with respect to the dimensionality of the system, accounts explicitly for the correlation properties of the disorder. The general theory is applied to the evaluation of a two-frequency mutual coherence function, which is an important quantity in itself, an
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