Research output: Chapter in Book/Report/Conference proceeding › Conference contribution › Research › peer-review
The Possibility of Managing the Width of the 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. Vol. 1 2018. 040002 (AIP Conference Proceedings; Vol. 2064).Research output: Chapter in Book/Report/Conference proceeding › Conference contribution › Research › peer-review
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TY - GEN
T1 - The Possibility of Managing the Width of the Resonance for Simple Single Nanoparticle.
AU - Efremova, Ekaterina. A.
AU - Krylov, Igor. R.
AU - Prokhorova, Ulyana. V.
PY - 2018
Y1 - 2018
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.
KW - nanoantennas
KW - Metamaterial
UR - https://aip.scitation.org/doi/10.1063/1.5087681
UR - https://printorders.aip.org/proceedings/2064
M3 - Conference contribution
SN - 9780735417922
VL - 1
T3 - AIP Conference Proceedings
BT - State-of-the-art trends of Scientific Research of Artificial and Natural Nanoobjects, STRANN-2018
Y2 - 17 October 2018 through 19 October 2018
ER -
ID: 94298549