
Point Sources and Multipoles in Inverse Scattering Theory
Roland Potthast(Author)
Chapman & Hall/CRC (Publisher)
1st Edition
Published on 30. May 2001
Book
Paperback/Softback
276 pages
978-1-58488-252-7 (ISBN)
Description
Over the last twenty years, the growing availability of computing power has had an enormous impact on the classical fields of direct and inverse scattering. The study of inverse scattering, in particular, has developed rapidly with the ability to perform computational simulations of scattering processes and led to remarkable advances in a range of applications, from medical imaging and radar to remote sensing and seismic exploration.
Point Sources and Multipoles in Inverse Scattering Theory provides a survey of recent developments in inverse acoustic and electromagnetic scattering theory. Focusing on methods developed over the last six years by Colton, Kirsch, and the author, this treatment uses point sources combined with several far-reaching techniques to obtain qualitative reconstruction methods. The author addresses questions of uniqueness, stability, and reconstructions for both two-and three-dimensional problems.
With interest in extracting information about an object through scattered waves at an all-time high, Point Sources and Multipoles in Inverse Scattering Theory provides a valuable source of information from both the mathematical and applications perspectives. It offers insight into the general recovery of information from incomplete data and has direct, practical relevance to work on image reconstruction.
Point Sources and Multipoles in Inverse Scattering Theory provides a survey of recent developments in inverse acoustic and electromagnetic scattering theory. Focusing on methods developed over the last six years by Colton, Kirsch, and the author, this treatment uses point sources combined with several far-reaching techniques to obtain qualitative reconstruction methods. The author addresses questions of uniqueness, stability, and reconstructions for both two-and three-dimensional problems.
With interest in extracting information about an object through scattered waves at an all-time high, Point Sources and Multipoles in Inverse Scattering Theory provides a valuable source of information from both the mathematical and applications perspectives. It offers insight into the general recovery of information from incomplete data and has direct, practical relevance to work on image reconstruction.
Reviews / Votes
"The presentation...is sound and fresh...provides valuable sources of information from both the mathematical and applications perspectives...will prove particularly useful to engineers in acoustics, antennas and remote sensing as well as to students and researchers in electromagnetic theory, scattering theory, and partial differential equations."-Vladislav G. Dubrovsky in Mathematical Reviews
More details
Series
Language
English
Place of publication
Oxford
United States
Publishing group
Taylor & Francis Inc
Target group
College/higher education
Professional
Illustrations
2 s/w Tabellen
2 Tables, black and white
Dimensions
Height: 234 mm
Width: 156 mm
Thickness: 15 mm
Weight
424 gr
ISBN-13
978-1-58488-252-7 (9781584882527)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Roland Potthast
Point Sources and Multipoles in Inverse Scattering Theory
Book
06/2018
1st Edition
CRC Press
€271.40
Shipment within 10-20 days

Roland Potthast
Point Sources and Multipoles in Inverse Scattering Theory
E-Book
05/2001
1st Edition
Chapman & Hall/CRC
€225.99
Available for download

Roland Potthast
Point Sources and Multipoles in Inverse Scattering Theory
E-Book
05/2001
Chapman and Hall
€225.99
Available for download
Person
Roland Potthast
Content
Introduction and Tools. Direct Scattering Problems. Uniqueness and Stability in Inverse Scattering. The Case of Finite Data. The Point-Source Method and Applications. Singular Sources and Shape Reconstruction. Linear Sampling Methods. References. Index.