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Titlebook: Diffuse Waves in Complex Media; Jean-Pierre Fouque Book 1999 Springer Science+Business Media Dordrecht 1999 crystal.diffusion.geophysics.m

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发表于 2025-3-21 18:56:27 | 显示全部楼层 |阅读模式
书目名称Diffuse Waves in Complex Media
编辑Jean-Pierre Fouque
视频video
丛书名称Nato Science Series C:
图书封面Titlebook: Diffuse Waves in Complex Media;  Jean-Pierre Fouque Book 1999 Springer Science+Business Media Dordrecht 1999 crystal.diffusion.geophysics.m
描述The NATO Advanced Study Institute on Diffuse Waves in Complex Media was held at the "Centre de Physique des Houches" in France from March 17 to 27, 1998. The Schools‘ scientific content, wave propagation in heterogeneous me­ dia, has covered many areas of fundamental and applied research. On the one hand, the understanding of wave propagation has considerably improved during the last thirty years. New developments and concepts such as, speckle correlations, weak and strong localization, time reversal, near-field propagation are under active research. On the other hand, wave propagation in random media is now being investigated in many different fields such as applied mathematics, acoustics, optics, atomic physics, geo­ physics or medical sciences. Each community often uses its own langage to describe the same phenomena. The aim of the School was to gather worldwide specialists to illuminate various aspects of wave propagation in random media. This volume presents fourteen expository articles corresponding to courses and seminars given during the School. They are arranged as follows. The first three articles deal with the phenomena of localization of waves: B. van Tiggelen (p. 1) gi
出版日期Book 1999
关键词crystal; diffusion; geophysics; materials science; scattering; statistics; wave propagation
版次1
doihttps://doi.org/10.1007/978-94-011-4572-5
isbn_softcover978-0-7923-5680-6
isbn_ebook978-94-011-4572-5Series ISSN 1389-2185
issn_series 1389-2185
copyrightSpringer Science+Business Media Dordrecht 1999
The information of publication is updating

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发表于 2025-3-21 23:30:30 | 显示全部楼层
Mathematical Theory of Localization, free case and is somewhat unexpected and intricate. The major drawback in the mathematical approach to this phenomenon is that the physical background of the problem is “almost surely lost” (faithful readers will understand soon… ) and this certainly indicates that a “good proof” of localization is
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Optics of Ordered and Disordered Atomic Media,response theory provides the spectrum of electric-field fluctuations, whose maxima define the polariton dispersion relation. The dependence of polariton radiative damping rates on the degree of disorder in the dielectric is calculated. Particular attention is given to the magnitudes of the scattered
发表于 2025-3-22 19:50:24 | 显示全部楼层
Cold Atoms and Multiple Scattering,irst magneto-optical trap [2], the sub-Doppler [3] and sub-recoil [4] cooling techniques and more recently the observation of Bose-Einstein condensation of dilute atomic gases [5] [6]. A review on milestones in this field can be found in the 1997 Nobel lectures by S. Chu [7], C. Cohen-Tannoudji [8]
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Wave Scattering from Rough Surfaces,ns leading to a solution to this problem are established. Then, both analytical and numerical procedures are addressed for the field and the angular distribution of mean scattered intensity, these leading to the observation of single and multiple scattering phenomena of current interest. These inclu
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Acoustic Pulses Propagating in Randomly Layered Media, separation of scales introduced by G. Papanicolaou and his coauthors. Basic facts on diffusion-approximation and on the use of stochastic calculus will be recalled. We show how a multi-frequency asymptotic analysis gives a precise description of the probability distribution of the transmitted front
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Reflection and Transmission of Acoustic Waves by a Locally-Layered Random Slab,. The reflection and transmission properties of such a locally-layered slab are studied. Of principal interest is the question of the robustness of the plane layered theory. Do phenomena such as localization and the results of O’Doherty-Anstey theory persist under perturbations of plane layering? We
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