Creating Materials With A Desired Refraction Coefficient


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Creating Materials with a Desired Refraction Coefficient


Creating Materials with a Desired Refraction Coefficient

Author: Alexander G. Ramm

language: en

Publisher: Morgan & Claypool Publishers

Release Date: 2017-12-20


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Creating Materials with a Desired Refraction Coefficient' provides a recipe for creating materials with a desired refraction coefficient, and the many-body wave scattering problem for many small impedance bodies is solved. The physical assumptions make the multiple scattering effects essential. On the basis of this theory, a recipe for creating materials with a desired refraction coefficient is given. Technological problems are formulated which, when solved, make the theory practically applicable. The Importance of a problem of producing a small particle with a desired boundary impedance is emphasized, and inverse scattering with non-over-determined scattering data is considered.

Creating Materials with a Desired Refraction Coefficient


Creating Materials with a Desired Refraction Coefficient

Author:

language: en

Publisher:

Release Date: 2017


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Wave Scattering By Small Bodies: Creating Materials With A Desired Refraction Coefficient And Other Applications


Wave Scattering By Small Bodies: Creating Materials With A Desired Refraction Coefficient And Other Applications

Author: Alexander G Ramm

language: en

Publisher: World Scientific

Release Date: 2023-09-21


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The book is a research monograph. An asymptotically exact solution of the many-body scattering problem is given under the assumption a ≪ d ≪ λ, where a is the characteristic size of a small particle, d is the smallest distance between particles and λ is the wavelength in the medium in which the particles are embedded. Scattering of scalar and electromagnetic waves is considered. Heat transfer theory in the medium in which many small bodies are embedded is developed. Quantum-mechanical theory of scattering by many potentials with small support is constructed.On the basis of these theoretical results, important applications are presented. First, a method for creating materials with a desired refraction coefficient is given. Secondly, a method for creating wave-focusing materials is developed. Technological problems to be solved for practical usage of these applied results are discussed.This book contains the contents of the author's earlier monograph, published in 2013. New appendices, based on the author's review papers published after 2013, are added.