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Verallgemeinerte Lorenz-Mie Theorien - 9783642171932 - edition reliée, livre de poche

ISBN: 9783642171932

ISBN-13: 9783642171932, 978-3642171932. The Lorenz-Mie theory, describing the interaction between a homogeneous sphere and an electromagnetic plane wave, is likely to be one of the most f… Plus…

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2011, ISBN: 3642171931

Von Gouesbet, Gerard und Gerard Grehan Gouesbet, Gerard und Gerard Grehan Generalized Lorenz-Mie Theories. Neubindung, Buchschnitt leicht verkürzt 10288200/12. Verlag / Jahr. Unser Preis.… Plus…

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Generalized Lorenz-Mie Theories - edition reliée, livre de poche

2011

ISBN: 3642171931

[EAN: 9783642171932], Neubuch, [PU: Berlin Springer Berlin Heidelberg Springer Feb 2011], LOCALIZED BEAM MODELS, EXPERIMENTAL FLUID MECHANICS, GLMT, GAUSSIAN BEAMS, LIGHT SCATTERING, Beso… Plus…

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Gouesbet, Gerard und Gerard Grehan:
Generalized Lorenz-Mie Theories - edition reliée, livre de poche

2011, ISBN: 3642171931

[EAN: 9783642171932], Gebraucht, guter Zustand, [SC: 0.0], [PU: Springer Berlin], LOCALIZED BEAM MODELS,LIGHT SCATTERING,GLMT,EXPERIMENTAL FLUID MECHANICS,GAUSSIAN BEAMS,, Neubindung, Buc… Plus…

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Gerard Gouesbet; Gérard Gréhan:
Generalized Lorenz-Mie Theories - Première édition

2011, ISBN: 9783642171932

Edition reliée

Buch, Hardcover, 2011, [PU: Springer Berlin], Springer Berlin, 2011

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Generalized Lorenz-Mie Theories

The Lorenz-Mie theory, describing the interaction between a homogeneous sphere and an electromagnetic plane wave, is likely to be one of the most famous theories in light scattering. But, with the advent of lasers and their increasing development in various fields, it has become too old-fashioned to meet most of the modern requisites. The book deals with generalized Lorenz-Mie theories when the illuminating beam is an electromagnetic arbitrary shaped beam, relying on the method of separation of variables. A particular emphasis is stressed on the case of the homogeneous sphere but other regular particles are considered too. An extensive discussion of the methods available to the evaluation of beam shape coefficients describing the illuminating beam is provided, and several methods are discussed. Applications concern many fields such as optical particle sizing and, more generally, optical particle characterization, morphology-dependent resonances, or mechanical effects of light for optical trapping, optical tweezers and optical stretchers. Various computer programs relevant to the contents of the book are furthermore provided.

Informations détaillées sur le livre - Generalized Lorenz-Mie Theories


EAN (ISBN-13): 9783642171932
ISBN (ISBN-10): 3642171931
Version reliée
Date de parution: 2011
Editeur: Springer Berlin
348 Pages
Poids: 0,711 kg
Langue: eng/Englisch

Livre dans la base de données depuis 2008-11-27T01:44:10+01:00 (Zurich)
Page de détail modifiée en dernier sur 2024-04-02T19:20:14+02:00 (Zurich)
ISBN/EAN: 9783642171932

ISBN - Autres types d'écriture:
3-642-17193-1, 978-3-642-17193-2
Autres types d'écriture et termes associés:
Auteur du livre: gerard, jürgen neukirch, goué, lorenz spring
Titre du livre: lorenz, loren, klassenkörpertheorie, mie, ries


Données de l'éditeur

Auteur: Gerard Gouesbet; Gérard Gréhan
Titre: Generalized Lorenz-Mie Theories
Editeur: Springer; Springer Berlin
308 Pages
Date de parution: 2011-02-03
Berlin; Heidelberg; DE
Imprimé / Fabriqué en
Langue: Anglais
160,49 € (DE)
164,99 € (AT)
177,00 CHF (CH)
POD
XXXVII, 308 p.

BB; Hardcover, Softcover / Physik, Astronomie/Elektrizität, Magnetismus, Optik; Elektrizität, Magnetismus und Elektromagnetismus; Verstehen; Physik; Experimental Fluid Mechanics; GLMT; Gaussian Beams; Light Scattering; Localized Beam Models; Classical Electrodynamics; Engineering Fluid Dynamics; Maschinenbau: Strömungsmechanik; BC

The Lorenz-Mie theory, describing the interaction between a homogeneous sphere and an electromagnetic plane wave, is likely to be one of the most famous theories in light scattering. But, with the advent of lasers and their increasing development in various fields, it has become too old-fashioned to meet most of the modern requisites. The book deals with generalized Lorenz-Mie theories when the illuminating beam is an electromagnetic arbitrary shaped beam, relying on the method of separation of variables. A particular emphasis is stressed on the case of the homogeneous sphere but other regular particles are considered too. An extensive discussion of the methods available to the evaluation of beam shape coefficients describing the illuminating beam is provided, and several methods are discussed. Applications concern many fields such as optical particle sizing and, more generally, optical particle characterization, morphology-dependent resonances, or mechanical effects of light for optical trapping, optical tweezers and optical stretchers. Various computer programs relevant to the contents of the book are furthermore provided.
Extends the simple theory to the modern generalized Lorenz-Mie theory With many applications Essential reading scientists in experimental fluid dynamic scientists

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