Generalized Kerker Effects in Nanophotonics and Meta-Optics
arXiv:1801.00092 · doi:10.1364/OE.26.013085
Abstract
The original Kerker effect was introduced for a hypothetical magnetic sphere, and initially it did not attract much attention due to a lack of magnetic materials required. Rejuvenated by the recent explosive development of the field of metamaterials and especially its core concept of optically-induced artificial magnetism, the Kerker effect has gained an unprecedented impetus and rapidly pervaded different branches of nanophotonics. At the same time, the concept behind the effect itself has also been significantly expanded and generalized. Here we review the physics and various manifestations of the generalized Kerker effects, including the progress in the emerging field of meta-optics that focuses on interferences of electromagnetic multipoles of different orders and origins. We discuss not only the scattering by individual particles and particle clusters, but also the manipulation of reflection, transmission, diffraction, and absorption for metalattices and metasurfaces, revealing how various optical phenomena observed recently are all ubiquitously related to the Kerker's concept.
Invited Review for 20th Anniversary of Optics Express
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Cited by in corpus (71)
- Multipolar origin of bound states in the continuum
- Optical anapoles in nanophotonics and meta-optics
- Transverse scattering and generalized Kerker effects in all-dielectric Mie-resonant meta-optics
- Extreme Huygens' metasurfaces based on quasi-bound states in the continuum
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- Radiation forces and torques in optics and acoustics
- Engineered Near and Far Field Optical Response of Dielectric Nanostuctures using Focused Cylindrical Vector Beams
- Scattering and absorption invariance of nonmagnetic particles under duality transformations
- Optically resonant all-dielectric diabolo nanodisks
- Tailoring higher-order topological phases via orbital hybridization
- Towards rapid extracellular vesicles colorimetric detection using optofluidics-enhanced color-changing optical metasurface
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- Photonic Gap Antennas Based on High Index-Contrast Slot-Waveguides
- Directional Scattering Cancellation for an Electrically Large Dielectric Sphere
- Electromagnetic Duality Symmetry-Protected Dirac-Like Cones
- Kerker-Type Positional Disorder Immune Metasurfaces
- Independent engineering of individual plasmon modes in plasmonic dimers with conductive and capacitive coupling
- Broadband Control on Scattering Events with Interferometric Coherent Waves
- Gradient-based optimization of scatterer arrangements based on the T-matrix method
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