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Resonant forward scattering of light by high-refractive-index dielectric nanoparticles with toroidal dipole contribution
91
Citations
16
References
2017
Year
PhotonicsPlasmonicsEngineeringPhysicsNanomaterialsOptical PropertiesNanotechnologyKerker-type EffectApplied PhysicsLight ScatteringToroidal Dipole ContributionNegative-index MetamaterialDynamic MetamaterialsHigh-index Dielectric NanoparticlesHigh-refractive-index Dielectric NanoparticlesHigh-index NanoparticlesElectromagnetic MetamaterialsNanophotonics
In this Letter, we demonstrate and investigate the Kerker-type effect in high-index dielectric nanoparticles for which the third-order multipoles give a considerable contribution to the light scattering process. It is shown that the Kerker-type effect (strong suppression of the backward light scattering and, simultaneously, resonant forward light scattering) can be associated with the resonant excitation of a toroidal dipole moment in the system. This effect is realized due to the interference of the scattered waves generated by electric, magnetic, and toroidal dipole moments of high-index nanoparticles.
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