An International Journal

ISSN: 2582-0818

Home 9 Volume 9 Materials With a Desired Refraction Coefficient
Open AccessArticle
Materials With a Desired Refraction Coefficient

Department of Mathematics, Kansas State University Manhattan, KS 66506, USA.

* Corresponding Author
Annals of Communications in Mathematics 2024
, 8 (1),
38-42.
https://doi.org/10.62072/acm.2025.080103
Received: 02 Jan 2025 |
Accepted: 08 Mar 2025 |
Published: 31 Mar 2025

Abstract

Producing materials with a desired refraction coefficient is of great theoreti- cal and practical interest. There was no general method for creating such materials, except the method, developed by the author. It was not even known that such a method do ex- ist. The theoretical basis of this method is the asymptotic solution of the many-body wave scattering problem for many small bodies with prescribed boundary impedances. Multiple scattering is essential in our theory. The small bodies are embedded in a bounded region D, filled with a material with a known refraction coefficient n0(x). Our basic physical assumption is a ≪ d ≪ λ, where a is the characteristic size of the small particle, d is the minimal distance between neighboring particles, and λ is the wave length in D. The asymptotic of the solution to the above many-body scattering problem is derived for a → 0.

Keywords

Cite This Article

Materials With a Desired Refraction Coefficient.

Annals of Communications in Mathematics,

2025,
8 (1):
38-42.
https://doi.org/10.62072/acm.2025.080103
  • Creative Commons License
  • Copyright © 2024 by the Author(s). Licensee Techno Sky Publications. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).

    0 Comments

    Submit a Comment

    Your email address will not be published. Required fields are marked *

    Preview PDF

    XML File

    Loading

    Share

    Follow by Email
    YouTube
    Pinterest
    LinkedIn
    Share
    Instagram
    WhatsApp
    Reddit
    FbMessenger
    Tiktok
    URL has been copied successfully!