This book gives a detailed overview of the theory of electromagnetic wave scattering on single, homogeneous, but nonspherical particles. Beside the systematically developed Green's 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.
| ISBN: | 9783642367441 |
| Publication date: | 7th October 2013 |
| Author: | Tom Rother, Michael Kahnert |
| Publisher: | Springer an imprint of Springer Berlin Heidelberg |
| Format: | Hardback |
| Pagination: | 360 pages |
| Series: | Springer Series in Optical Sciences |
| Genres: |
Electricity, electromagnetism and magnetism Astrophysics Electronics engineering Atomic and molecular physics Mathematical physics |
This book gives a detailed overview of the theory of electromagnetic wave scattering on single, homogeneous, but nonspherical particles. Beside the systematically developed Green's 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.
Electromagnetic Wave Scattering on Nonspherical Particles features in the following genres: Electricity, electromagnetism and magnetism, Astrophysics, Electronics engineering, Atomic and molecular physics, Mathematical physics
Hardback. Not Available.
Electromagnetic Wave Scattering on Nonspherical Particles was written by Tom Rother, Michael Kahnert and published by Springer an imprint of Springer Berlin Heidelberg
Electromagnetic Wave Scattering on Nonspherical Particles has 360 pages
Yes it is part of Springer Series in Optical Sciences series