The Generalized Multipole Technique for Light Scattering

Recent Developments

Nonfiction, Science & Nature, Science, Physics, Electricity, Biological Sciences, Molecular Physics
Cover of the book The Generalized Multipole Technique for Light Scattering by , Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9783319748900
Publisher: Springer International Publishing Publication: March 9, 2018
Imprint: Springer Language: English
Author:
ISBN: 9783319748900
Publisher: Springer International Publishing
Publication: March 9, 2018
Imprint: Springer
Language: English

This book presents the Generalized Multipole Technique as a fast and powerful theoretical and computation tool to simulate light scattering by nonspherical particles. It also demonstrates the considerable potential of the method.

In recent years, the concept has been applied in new fields, such as simulation of electron energy loss spectroscopy and has been used to extend other methods, like the null-field method, making it more widely applicable. The authors discuss particular implementations of the GMT methods, such as the Discrete Sources Method (DSM), Multiple Multipole Program (MMP), the Method of Auxiliary Sources (MAS), the Filamentary Current Method (FCM), the Method of Fictitious Sources (MFS) and the Null-Field Method with Discrete Sources (NFM-DS). The Generalized Multipole Technique is a surface-based method to find the solution of a boundary-value problem for a given differential equation by expanding the fields in terms of fundamental or other singular solutions of this equation. The amplitudes of these fundamental solutions are determined from the boundary condition at the particle surface.

Electromagnetic and light scattering by particles or systems of particles has been the subject of intense research in various scientific and engineering fields, including astronomy, optics, meteorology, remote sensing, optical particle sizing and electromagnetics, which has led to the development of a large number of modelling methods based on the Generalized Multipole Technique for quantitative evaluation of electromagnetic scattering by particles of various shapes and compositions. The book describes these methods in detail.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book presents the Generalized Multipole Technique as a fast and powerful theoretical and computation tool to simulate light scattering by nonspherical particles. It also demonstrates the considerable potential of the method.

In recent years, the concept has been applied in new fields, such as simulation of electron energy loss spectroscopy and has been used to extend other methods, like the null-field method, making it more widely applicable. The authors discuss particular implementations of the GMT methods, such as the Discrete Sources Method (DSM), Multiple Multipole Program (MMP), the Method of Auxiliary Sources (MAS), the Filamentary Current Method (FCM), the Method of Fictitious Sources (MFS) and the Null-Field Method with Discrete Sources (NFM-DS). The Generalized Multipole Technique is a surface-based method to find the solution of a boundary-value problem for a given differential equation by expanding the fields in terms of fundamental or other singular solutions of this equation. The amplitudes of these fundamental solutions are determined from the boundary condition at the particle surface.

Electromagnetic and light scattering by particles or systems of particles has been the subject of intense research in various scientific and engineering fields, including astronomy, optics, meteorology, remote sensing, optical particle sizing and electromagnetics, which has led to the development of a large number of modelling methods based on the Generalized Multipole Technique for quantitative evaluation of electromagnetic scattering by particles of various shapes and compositions. The book describes these methods in detail.

More books from Springer International Publishing

Cover of the book Advances in Self-Organizing Maps and Learning Vector Quantization by
Cover of the book Trauma Induced Coagulopathy by
Cover of the book The Quest for Subsidy Reforms in the Middle East and North Africa Region by
Cover of the book Professional Authority After the Global Financial Crisis by
Cover of the book Image Analysis by
Cover of the book The Carrera Revolt and 'Hybrid Warfare' in Nineteenth-Century Central America by
Cover of the book De-Moralizing Gay Rights by
Cover of the book Cloud Computing and Services Science by
Cover of the book Populist Discourse in Venezuela and the United States by
Cover of the book New Trends and Advanced Methods in Interdisciplinary Mathematical Sciences by
Cover of the book Climate Change in the Himalayas by
Cover of the book Concepts in Quantum Field Theory by
Cover of the book The Appropriation of Religion in Southeast Asia and Beyond by
Cover of the book Seawater Intrusion in the Coastal Alluvial Aquifers of the Mahanadi Delta by
Cover of the book General Relativity, Cosmology and Astrophysics by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy