Superresonance in Micron Borosilicate Glass Sphere in Optical Range; Optoelectronics, Instrumentation and Data Processing; Vol. 58, iss. 5

Détails bibliographiques
Parent link:Optoelectronics, Instrumentation and Data Processing.— .— New York: Springer Science+Business Media LLC.
Vol. 58, iss. 5.— 2022.— P. 514-519
Auteur principal: Minin I. V. Igor Vladilenovich
Autres auteurs: Minin O. V. Oleg Vladilenovich, Song Zhou
Résumé:Title screen
It is shown that in the optical range it is fundamentally possible for nonabsorbing mesodimensional spheres to realize high-order Fano resonances associated with internal Mie modes. Based on simulation using the Mie theory, it is shown that for a spherical mesodimensional particle made of a real dielectric material—BK7 borosilicate glass, it is possible to generate localized fields with an extremely high intensity: about 10 for magnetic and 10 for electric fields. Moreover, it has been demonstrated that the presence of a low dissipation particle in the material might not decrease, but rather increase the intensity of the generated fields. The latter is related to the unusual behavior of the Mie scattering coefficients of the particle’s internal field under superresonance conditions
Текстовый файл
AM_Agreement
Langue:anglais
Publié: 2022
Sujets:
Accès en ligne:https://doi.org/10.3103/S8756699022050107
Format: Électronique Chapitre de livre
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=684946

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330 |a It is shown that in the optical range it is fundamentally possible for nonabsorbing mesodimensional spheres to realize high-order Fano resonances associated with internal Mie modes. Based on simulation using the Mie theory, it is shown that for a spherical mesodimensional particle made of a real dielectric material—BK7 borosilicate glass, it is possible to generate localized fields with an extremely high intensity: about 10 for magnetic and 10 for electric fields. Moreover, it has been demonstrated that the presence of a low dissipation particle in the material might not decrease, but rather increase the intensity of the generated fields. The latter is related to the unusual behavior of the Mie scattering coefficients of the particle’s internal field under superresonance conditions 
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610 1 |a электронный ресурс 
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610 1 |a Fano resonances 
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610 1 |a subwave field localization 
700 1 |a Minin  |b I. V.  |c physicist  |c Professor of Tomsk Polytechnic University, Doctor of technical sciences  |f 1960-  |g Igor Vladilenovich  |9 20427 
701 1 |a Minin  |b O. V.  |c physicist  |c professor of Tomsk Polytechnic University, Doctor of technical sciences  |f 1960-  |g Oleg Vladilenovich  |9 21866 
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