Physics

Diffraction by an Immersed Elastic Wedge

US$5.00 US$54.00

Title (user) : Diffraction by an Immersed Elastic WedgeISBN : 3540668101,9783540668107ISSN : 0075-8434DOI : 10.1007/BFb0092515GoogleBook ID : JAJZN5DHewYCOpenLibrary ID : OL9063190MEdition : 1Series : Lecture Notes in Mathematics 1723Authors (user) : Jean-Pierre...
Description

Title (user) : Diffraction by an Immersed Elastic Wedge

ISBN : 3540668101,9783540668107

ISSN : 0075-8434

DOI : 10.1007/BFb0092515

GoogleBook ID : JAJZN5DHewYC

OpenLibrary ID : OL9063190M

Edition : 1

Series : Lecture Notes in Mathematics 1723

Authors (user) : Jean-Pierre Croisille, Gilles Lebeau (auth.)

Authors (google) : Jean-Pierre Croisille

Publisher : Springer-Verlag Berlin Heidelberg

Language : English

Publication Date : 1999

Scanned : yes (300 DPI)

File Format : djvu


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Description (user) :

This monograph presents the mathematical description and numerical computation of the high-frequency diffracted wave by an immersed elastic wave with normal incidence. The mathematical analysis is based on the explicit description of the principal symbol of the pseudo-differential operator connected with the coupled linear problem elasticity/fluid by the wedge interface. This description is subsequently used to derive an accurate numerical computation of diffraction diagrams for different incoming waves in the fluid, and for different wedge angles. The method can be applied to any problem of coupled waves by a wedge interface. This work is of interest for any researcher concerned with high frequency wave scattering, especially mathematicians, acousticians, engineers.


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Description (google) :
This book describes the fundamental principles of the laser and the propagation of laser radiation in bulk and guided wave components. All solid state, gas, and semiconductor lasers are analyzed as macroscopic devices with susceptibility originating from quantum mechanical interactions. Additional analysis of the unique properties of coherent laser light in optical components is derived from fundamental principles.


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Table of contents :
Introduction....Pages 1-2
Notation and results....Pages 3-26
The spectral function....Pages 27-56
Proofs of the results....Pages 57-78
Numerical algorithm....Pages 79-95
Numerical results....Pages 97-125

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