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Integral Equation Methods in Inverse Scattering Theory

Specificaties
Paperback, 290 blz. | Engels
Society for Industrial and Applied Mathematics | e druk, 2014
ISBN13: 9781611973150
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Society for Industrial and Applied Mathematics e druk, 2014 9781611973150
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Scattering theory, a powerful method for the analysis of PDEs, represents one of the most important developments in mathematical physics of recent decades. This classic book is ideal as a supplemental text in a graduate course on scattering theory or inverse problems, and will also be of interest to research scientists in mathematics, physics and engineering. The exposition is based on a rigorous treatment of the Riesz–Fredholm theory of compact operators in dual systems, followed by a derivation of the jump conditions and mapping properties of scalar and vector potentials in spaces of continuous functions. These results are then used to study scattering problems for the Helmholtz and Maxwell equations. The reader will find an in-depth treatment of the use of boundary integral equations to solve scattering problems for acoustic and electromagnetic waves, and an introduction to inverse scattering theory with an emphasis on a function-theoretic approach.

Specificaties

ISBN13:9781611973150
Taal:Engels
Bindwijze:Paperback
Aantal pagina's:290
Uitgever:Society for Industrial and Applied Mathematics

Inhoudsopgave

Preface to the Classics Edition; Preface; Symbols; 1. The Riesz–Fredholm theory for compact operators; 2. Regularity properties of surface potentials; 3. Boundary-value problems for the scalar Helmholtz equation; 4. Boundary-value problems for the time-harmonic Maxwell equations and the vector Helmholtz equation; 5. Low frequency behavior of solutions to boundary-value problems in scattering theory; 6. The inverse scattering problem: exact data; 7. Improperly posed problems and compact families; 8. The determination of the shape of an obstacle from inexact far-field data; 9. Optimal control problems in radiation and scattering theory; References; Index.

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        Integral Equation Methods in Inverse Scattering Theory