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Electromagnetic wave scattering on nonspherical particles : basic methodology and simulations

Author: Tom Rother
Publisher: Heidelberg : Springer, [2013?] ©2014
Series: Springer series in optical sciences, v.145.
Edition/Format:   eBook : Document : English : Second editionView all editions and formats
Database:WorldCat
Summary:
This book gives a detailed overview of the theory of electromagnetic wave scattering on single, homogeneous, but nonspherical particles. Beside the systematically developed Greens function formalism of the first edition this second and enlarged edition contains additional material regarding group theoretical considerations for nonspherical particles with boundary symmetries, an iterative T-matrix scheme for  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Rother, Tom.
Electromagnetic wave scattering on nonspherical particles.
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Tom Rother
ISBN: 9783642367458 3642367453
OCLC Number: 859523996
Notes: Accompanying materials may not be included in all electronic versions.
Description: 1 online resource (xvii, 360 pages) : illustrations.
Contents: Scattering as a Boundary Value Problem --
Filling the Mathematical Tool Box --
First Approach to the Green Functions: The Rayleigh Method --
Second Approach to the Green Functions: The Self-Consistent Way --
Other Solution Methods --
The Rayleigh Hypothesis --
Physical Basics of Electromagnetic Wave Scattering --
Scattering on Particles with Discrete Symmetries --
Numerical Simulations of Scattering Experiments.
Series Title: Springer series in optical sciences, v.145.
Responsibility: Tom Rother.

Abstract:

This book gives a detailed overview of the theory of electromagnetic wave scattering on single, homogeneous, but nonspherical particles. Beside the systematically developed Greens function formalism of the first edition this second and enlarged edition contains additional material regarding group theoretical considerations for nonspherical particles with boundary symmetries, an iterative T-matrix scheme for approximate solutions, and two additional but basic applications. Moreover, to demonstrate the advantages of the group theoretical approach and the iterative solution technique, the restriction to axisymmetric scatterers of the first edition was abandoned.

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