2025-02-23T03:37:29-05:00 DEBUG: VuFindSearch\Backend\Solr\Connector: Query fl=%2A&wt=json&json.nl=arrarr&q=id%3A%22irk-123456789-16196%22&qt=morelikethis&rows=5
2025-02-23T03:37:29-05:00 DEBUG: VuFindSearch\Backend\Solr\Connector: => GET http://localhost:8983/solr/biblio/select?fl=%2A&wt=json&json.nl=arrarr&q=id%3A%22irk-123456789-16196%22&qt=morelikethis&rows=5
2025-02-23T03:37:29-05:00 DEBUG: VuFindSearch\Backend\Solr\Connector: <= 200 OK
2025-02-23T03:37:29-05:00 DEBUG: Deserialized SOLR response

Моделювання середовищ із заданим коефіцієнтом заломлення

A combination of asymptotic approach and computational modeling is used for solution of problem to create the media with the prescribed electrodynamic characteristic, in particular, a refraction coefficient. The initial diffraction problem is considered under the assumptions ka << 1, d >>...

Full description

Saved in:
Bibliographic Details
Main Author: Андрійчук, М.І.
Format: Article
Language:Ukrainian
Published: Фізико-механічний інститут ім. Г.В. Карпенка НАН України 2010
Subjects:
Online Access:http://dspace.nbuv.gov.ua/handle/123456789/16196
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:A combination of asymptotic approach and computational modeling is used for solution of problem to create the media with the prescribed electrodynamic characteristic, in particular, a refraction coefficient. The initial diffraction problem is considered under the assumptions ka << 1, d >> a, where a is the size of the particle and d is the distance between the neighboring particles. Impedance boundary conditions are assumed on the boundaries of small particles. The results of numerical simulation show good agreement with the theory. They open a way to numerical implementation of the method for creating media with a desired refraction coefficient.