Multipolar Engineering of Subwavelength Dielectric Particles for Scattering Enhancement
S.D. Krasikov
1
,
M Odit
1, 2
,
M.A. Odit
1, 2
,
D. Dobrykh
1, 3
,
I. Yusupov
1
,
A Mikhailovskaya
1, 3
,
A.A. Mikhailovskaya
1, 3
,
D. Shakirova
1
,
A. Shcherbakov
1
,
A Slobozhanyuk
1
,
P Ginzburg
3, 4
,
Pavel Ginzburg
3, 4
,
Publication type: Journal Article
Publication date: 2021-02-22
scimago Q1
wos Q2
SJR: 1.288
CiteScore: 7.2
Impact factor: 4.4
ISSN: 23317019
General Physics and Astronomy
Abstract
Electromagnetic scattering on subwavelength structures keeps attracting attention owing to abroad range of possible applications, where this phenomenon is in use. Fundamental limits of scattering cross-section, being well understood in spherical geometries, are overlooked in cases of low-symmetry resonators. Here, we revise the notion of superscattering and link this property with symmetry groups of the scattering potential. We demonstrate pathways to spectrally overlap several eigenmodes of a resonator in a way they interfere constructively and enhance the scattering cross-section. As a particular example, we demonstrate spectral overlapping of several electric and magnetic modes in a subwavelength entirely homogeneous ceramic resonator. The optimized structures show the excess of a dipolar scattering cross-section limit for a sphere up to a factor of four. The revealed rules, which link symmetry groups with fundamental scattering limits, allow performing and assessing designs of subwavelength supperscatterers, which can find a use in label-free imaging, compact antennas, long-range radio frequency identification, and many other fields.
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Total citations:
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Citations from 2024:
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(36%)
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Krasikov S. et al. Multipolar Engineering of Subwavelength Dielectric Particles for Scattering Enhancement // Physical Review Applied. 2021. Vol. 15. No. 2. 024052
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Krasikov S., Odit M., Odit M., Dobrykh D., Yusupov I., Mikhailovskaya A., Mikhailovskaya A., Shakirova D., Shcherbakov A., Slobozhanyuk A., Slobozhanyuk A. P., Ginzburg P., Ginzburg P., Filonov D. S., Bogdanov A. Multipolar Engineering of Subwavelength Dielectric Particles for Scattering Enhancement // Physical Review Applied. 2021. Vol. 15. No. 2. 024052
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TY - JOUR
DO - 10.1103/PhysRevApplied.15.024052
UR - https://doi.org/10.1103/PhysRevApplied.15.024052
TI - Multipolar Engineering of Subwavelength Dielectric Particles for Scattering Enhancement
T2 - Physical Review Applied
AU - Krasikov, S.D.
AU - Odit, M
AU - Odit, M.A.
AU - Dobrykh, D.
AU - Yusupov, I.
AU - Mikhailovskaya, A
AU - Mikhailovskaya, A.A.
AU - Shakirova, D.
AU - Shcherbakov, A.
AU - Slobozhanyuk, A
AU - Slobozhanyuk, Alexey P.
AU - Ginzburg, P
AU - Ginzburg, Pavel
AU - Filonov, Dmitry S.
AU - Bogdanov, Andrey
PY - 2021
DA - 2021/02/22
PB - American Physical Society (APS)
IS - 2
VL - 15
SN - 2331-7019
ER -
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Copy
@article{2021_Krasikov,
author = {S.D. Krasikov and M Odit and M.A. Odit and D. Dobrykh and I. Yusupov and A Mikhailovskaya and A.A. Mikhailovskaya and D. Shakirova and A. Shcherbakov and A Slobozhanyuk and Alexey P. Slobozhanyuk and P Ginzburg and Pavel Ginzburg and Dmitry S. Filonov and Andrey Bogdanov},
title = {Multipolar Engineering of Subwavelength Dielectric Particles for Scattering Enhancement},
journal = {Physical Review Applied},
year = {2021},
volume = {15},
publisher = {American Physical Society (APS)},
month = {feb},
url = {https://doi.org/10.1103/PhysRevApplied.15.024052},
number = {2},
pages = {024052},
doi = {10.1103/PhysRevApplied.15.024052}
}