Generalized hybrid anapole modes in all-dielectric ellipsoid particles [Invited]

被引:31
作者
Ospanova, Anar K. [1 ,2 ,3 ]
Basharin, Alexey [1 ,2 ,4 ,5 ]
Miroshnichenko, Andrey E. [6 ]
Luk'yanchuk, Boris [7 ]
机构
[1] Natl Univ Sci & Technol MISiS, Lab Superconducting Metamat, Leninsky Pr 4, Moscow 119049, Russia
[2] Natl Univ Sci & Technol MISiS, Dept Theoret Phys & Quantum Technol, Leninsky Pr 4, Moscow 119049, Russia
[3] Al Farabi Kazakh Natl Univ, Dept Phys & Technol, 71 Al Farabi Av, Alma Ata 050040, Kazakhstan
[4] Inst Theoret & Appl Electromagnet RAS, 13 Izhorskaya, Moscow 125412, Russia
[5] Moscow Inst Phys & Technol, Dolgoprudnyi 117303, Moscow Region, Russia
[6] UNSW Canberra, Sch Engn & Informat Technol, Canberra, ACT 2600, Australia
[7] Lomonosov Moscow State Univ, Fac Phys, Moscow 119991, Russia
基金
俄罗斯基础研究基金会; 澳大利亚研究理事会; 俄罗斯科学基金会;
关键词
RESONANCES; MICROSTRUCTURE; SCATTERING;
D O I
10.1364/OME.414340
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Numerous exciting optical effects in all-dielectric high-refractive-index structures are associated with so-called toroidal electrodynamics. Among these effects are anapoles, nonradiated states caused by interference phenomena, e.g. between electric dipole and toroidal dipole modes. For a spherical particle it is possible to reach simultaneous destructive interference for electric, magnetic, and corresponding toroidal dipole modes (so-called hybrid anapole mode), by varying the refractive index and/or particle size. However, there are no sufficient degrees of freedom within spherical geometry to extend the hybrid anapole mode effect to higher multipolcs. Due to the optical theorem, it is also impossible to create the ideal anapole with destructive interference for all multipoles under plane wave illumination. In principle, it is possible to suppress radiation losses for the finite number of multipoles only by constructing the nanoantenna with complex geometry. Our approach of the hybrid anapole state excitation, we demonstrate in ellipsoidal all-dielectric particle providing cancellation of both electric and magnetic scattering up to quadrupole modes. This effect is achieved due to the optimised geometry of the ellipsoidal particle. Moreover, we provide classification of novel anapoles arising due to interference between moments and their mean- square radii (MSR) of electric, magnetic and toroidal family and introduce generalized anapoles for high order interaction between moments. Our concept is useful for the design of light controlling devices, reflectionless metasurfaces, high Q-factor opened resonators and nonscattering particle development. (C) 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
引用
收藏
页码:23 / 34
页数:12
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