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Generalized lorenz-mie theories
~
Gouesbet, Gerard.
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Generalized lorenz-mie theories
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Generalized lorenz-mie theories/ by Gérard Gouesbet, Gerard Grehan.
作者:
Gouesbet, Gerard.
其他作者:
Grehan, Gerard.
出版者:
Cham :Springer International Publishing : : 2023.,
面頁冊數:
xxxviii, 385 p. :ill. (some col.), digital ;24 cm.
內容註:
Background in Maxwell's Electromagnetism and Maxwell's Equations -- Resolution of Special Maxwell's Equations -- Generalized Lorenz-Mie Theories in the Strict Sense, and other GLMTs -- Gaussian Beams, and Other Beams -- Finite Series -- Special Cases of Axisymmetric and Gaussian Beams -- The Localized Approximation and Localized Beam Models -- Applications, and Miscellaneous Issues -- Conclusion.
Contained By:
Springer Nature eBook
標題:
Mie scattering. -
電子資源:
https://doi.org/10.1007/978-3-031-25949-4
ISBN:
9783031259494
Generalized lorenz-mie theories
Gouesbet, Gerard.
Generalized lorenz-mie theories
[electronic resource] /by Gérard Gouesbet, Gerard Grehan. - Third edition. - Cham :Springer International Publishing :2023. - xxxviii, 385 p. :ill. (some col.), digital ;24 cm.
Background in Maxwell's Electromagnetism and Maxwell's Equations -- Resolution of Special Maxwell's Equations -- Generalized Lorenz-Mie Theories in the Strict Sense, and other GLMTs -- Gaussian Beams, and Other Beams -- Finite Series -- Special Cases of Axisymmetric and Gaussian Beams -- The Localized Approximation and Localized Beam Models -- Applications, and Miscellaneous Issues -- Conclusion.
This book explores generalized Lorenz-Mie theories when the illuminating beam is an electromagnetic arbitrary shaped beam relying on the method of separation of variables. Although it particularly focuses on the homogeneous sphere, the book also considers other regular particles. It discusses in detail the methods available for evaluating beam shape coefficients describing the illuminating beam. In addition it features applications used in many fields such as optical particle sizing and, more generally, optical particle characterization, morphology-dependent resonances and the mechanical effects of light for optical trapping, optical tweezers and optical stretchers. Furthermore, it provides various computer programs relevant to the content. In the last years many new developments took place so that a new edition became necessary. This new book now incorporates solutions for many more particle shapes and morphologies, various kinds of illuminating beams, and also to mechanical effects of light, whispering-gallery modes and resonances, and optical particle characterization techniques. In addition, the new book considers localized approximations, on the renewal of the finite series technique, on a new categorization of optical forces, and the study of Bessel beams, Mathieu beams, Laguerre-Gauss beams, frozen waves.
ISBN: 9783031259494
Standard No.: 10.1007/978-3-031-25949-4doiSubjects--Topical Terms:
1314350
Mie scattering.
LC Class. No.: QC427
Dewey Class. No.: 535.43
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Background in Maxwell's Electromagnetism and Maxwell's Equations -- Resolution of Special Maxwell's Equations -- Generalized Lorenz-Mie Theories in the Strict Sense, and other GLMTs -- Gaussian Beams, and Other Beams -- Finite Series -- Special Cases of Axisymmetric and Gaussian Beams -- The Localized Approximation and Localized Beam Models -- Applications, and Miscellaneous Issues -- Conclusion.
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This book explores generalized Lorenz-Mie theories when the illuminating beam is an electromagnetic arbitrary shaped beam relying on the method of separation of variables. Although it particularly focuses on the homogeneous sphere, the book also considers other regular particles. It discusses in detail the methods available for evaluating beam shape coefficients describing the illuminating beam. In addition it features applications used in many fields such as optical particle sizing and, more generally, optical particle characterization, morphology-dependent resonances and the mechanical effects of light for optical trapping, optical tweezers and optical stretchers. Furthermore, it provides various computer programs relevant to the content. In the last years many new developments took place so that a new edition became necessary. This new book now incorporates solutions for many more particle shapes and morphologies, various kinds of illuminating beams, and also to mechanical effects of light, whispering-gallery modes and resonances, and optical particle characterization techniques. In addition, the new book considers localized approximations, on the renewal of the finite series technique, on a new categorization of optical forces, and the study of Bessel beams, Mathieu beams, Laguerre-Gauss beams, frozen waves.
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