The possibility of managing the width of resonance for simple single nanoparticle

Ekaterina A. Efremova, Igor R. Krylov, Ulyana V. Prokhorova

Результат исследований: Публикации в книгах, отчётах, сборниках, трудах конференцийстатья в сборнике материалов конференциинаучнаярецензирование

Выдержка

The paper demonstrates the possibility of a simple estimation of the resonance response expected frequency for a nanoantenna with the rectangular cross section when interacting with an external electromagnetic field. Additionally, the possibilities to construct a broadband resonance using scattering of nanoantennas with the rectangular cross section is analyzed. Analytical expressions for estimating of the resonance response are presented along with the full-wave modeling for rectangular nanoparticles with a thickness less than or equal to the thickness of the skin layer. Analytical expressions are obtained using the refined LCR-circuit model. The estimates are in good agreement with the results of the full wave modeling.

Язык оригиналаанглийский
Название основной публикацииState-of-the-Art Trends of Scientific Research of Artificial and Natural Nanoobjects, STRANN 2018
РедакторыYuri Petrov, Oleg Vyvenko
ИздательAmerican Institute of Physics
Том2064
ISBN (электронное издание)9780735417922
DOI
СостояниеОпубликовано - 15 янв 2019
СобытиеInternational Conference on State-of-the-Art Trends of Scientific Research of Artificial and Natural Nanoobjects, STRANN 2018 - Moscow, Российская Федерация
Продолжительность: 17 окт 201819 окт 2018

Конференция

КонференцияInternational Conference on State-of-the-Art Trends of Scientific Research of Artificial and Natural Nanoobjects, STRANN 2018
СтранаРоссийская Федерация
ГородMoscow
Период17/10/1819/10/18

Отпечаток

nanoparticles
cross sections
resonance scattering
frequency response
electromagnetic fields
estimating
broadband
estimates

Предметные области Scopus

  • Физика и астрономия (все)

Цитировать

Efremova, E. A., Krylov, I. R., & Prokhorova, U. V. (2019). The possibility of managing the width of resonance for simple single nanoparticle. В Y. Petrov, & O. Vyvenko (Ред.), State-of-the-Art Trends of Scientific Research of Artificial and Natural Nanoobjects, STRANN 2018 (Том 2064). [040002] American Institute of Physics. https://doi.org/10.1063/1.5087681
Efremova, Ekaterina A. ; Krylov, Igor R. ; Prokhorova, Ulyana V. / The possibility of managing the width of resonance for simple single nanoparticle. State-of-the-Art Trends of Scientific Research of Artificial and Natural Nanoobjects, STRANN 2018. редактор / Yuri Petrov ; Oleg Vyvenko. Том 2064 American Institute of Physics, 2019.
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title = "The possibility of managing the width of resonance for simple single nanoparticle",
abstract = "The paper demonstrates the possibility of a simple estimation of the resonance response expected frequency for a nanoantenna with the rectangular cross section when interacting with an external electromagnetic field. Additionally, the possibilities to construct a broadband resonance using scattering of nanoantennas with the rectangular cross section is analyzed. Analytical expressions for estimating of the resonance response are presented along with the full-wave modeling for rectangular nanoparticles with a thickness less than or equal to the thickness of the skin layer. Analytical expressions are obtained using the refined LCR-circuit model. The estimates are in good agreement with the results of the full wave modeling.",
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Efremova, EA, Krylov, IR & Prokhorova, UV 2019, The possibility of managing the width of resonance for simple single nanoparticle. в Y Petrov & O Vyvenko (ред.), State-of-the-Art Trends of Scientific Research of Artificial and Natural Nanoobjects, STRANN 2018. том. 2064, 040002, American Institute of Physics, Moscow, Российская Федерация, 17/10/18. https://doi.org/10.1063/1.5087681

The possibility of managing the width of resonance for simple single nanoparticle. / Efremova, Ekaterina A.; Krylov, Igor R.; Prokhorova, Ulyana V.

State-of-the-Art Trends of Scientific Research of Artificial and Natural Nanoobjects, STRANN 2018. ред. / Yuri Petrov; Oleg Vyvenko. Том 2064 American Institute of Physics, 2019. 040002.

Результат исследований: Публикации в книгах, отчётах, сборниках, трудах конференцийстатья в сборнике материалов конференциинаучнаярецензирование

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N2 - The paper demonstrates the possibility of a simple estimation of the resonance response expected frequency for a nanoantenna with the rectangular cross section when interacting with an external electromagnetic field. Additionally, the possibilities to construct a broadband resonance using scattering of nanoantennas with the rectangular cross section is analyzed. Analytical expressions for estimating of the resonance response are presented along with the full-wave modeling for rectangular nanoparticles with a thickness less than or equal to the thickness of the skin layer. Analytical expressions are obtained using the refined LCR-circuit model. The estimates are in good agreement with the results of the full wave modeling.

AB - The paper demonstrates the possibility of a simple estimation of the resonance response expected frequency for a nanoantenna with the rectangular cross section when interacting with an external electromagnetic field. Additionally, the possibilities to construct a broadband resonance using scattering of nanoantennas with the rectangular cross section is analyzed. Analytical expressions for estimating of the resonance response are presented along with the full-wave modeling for rectangular nanoparticles with a thickness less than or equal to the thickness of the skin layer. Analytical expressions are obtained using the refined LCR-circuit model. The estimates are in good agreement with the results of the full wave modeling.

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Efremova EA, Krylov IR, Prokhorova UV. The possibility of managing the width of resonance for simple single nanoparticle. В Petrov Y, Vyvenko O, редакторы, State-of-the-Art Trends of Scientific Research of Artificial and Natural Nanoobjects, STRANN 2018. Том 2064. American Institute of Physics. 2019. 040002 https://doi.org/10.1063/1.5087681