Mie-Resonant Metaphotonics
Mie-resonant metaphotonics is a rapidly developing field that employs the physics of Mie resonances to control light at the nanoscale. Mie resonances are excited in high-refractive-index transparent nanoparticles and voids created in dielectric media, and they can be used to achieve a wide range of optical effects, including enhanced light–matter interaction, nonlinear optical effects, and topological photonics. Here, we review the recent advances in Mie-resonant metaphotonics, with a focus on the physics of Mie resonances and their applications in metaphotonics and metasurfaces. Through a comprehensive multipolar analysis, we demonstrate the complex interplay of electric and magnetic multipoles that govern their interaction with light. Recent advances have unveiled a diverse spectrum of scattering phenomena that can be achieved within precisely engineered structures. Within this framework, we review the underlying mechanics of the first and second Kerker conditions and describe the intricate mechanisms guiding these nanostructures’ light-scattering properties. Moreover, we cover intriguing phenomena such as the anapole and bound or quasi-bound states in the continuum. Of profound interest are the numerous practical applications that result from these revelations. Ultrafast processes, the emergence of nanolasers, and advancements in magneto-optic devices represent just a fraction of the transformative applications.
Top-30
Journals
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Optics Express
5 publications, 10%
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Physical Review B
4 publications, 8%
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Nanomaterials
3 publications, 6%
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Advanced Optical Materials
3 publications, 6%
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npj Nanophotonics
2 publications, 4%
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Optics Communications
2 publications, 4%
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ACS Applied Nano Materials
2 publications, 4%
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ACS Photonics
2 publications, 4%
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ACS Applied Optical Materials
2 publications, 4%
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Laser and Photonics Reviews
2 publications, 4%
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Journal of Applied Physics
2 publications, 4%
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Physical Review A
2 publications, 4%
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Physical Review Applied
2 publications, 4%
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Scientific Reports
1 publication, 2%
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RSC Advances
1 publication, 2%
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Optical Materials Express
1 publication, 2%
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Nano Letters
1 publication, 2%
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Advanced Materials Interfaces
1 publication, 2%
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Reviews in Physics
1 publication, 2%
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Journal Physics D: Applied Physics
1 publication, 2%
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Engineering
1 publication, 2%
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Journal of Materials Chemistry C
1 publication, 2%
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Advanced Photonics Research
1 publication, 2%
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Applied Physics Reviews
1 publication, 2%
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Journal of Alloys and Compounds
1 publication, 2%
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Advanced Theory and Simulations
1 publication, 2%
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Sustainable Energy Technologies and Assessments
1 publication, 2%
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Light: Science and Applications
1 publication, 2%
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Photonics and Nanostructures - Fundamentals and Applications
1 publication, 2%
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Publishers
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Wiley
8 publications, 16%
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American Physical Society (APS)
8 publications, 16%
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Elsevier
7 publications, 14%
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American Chemical Society (ACS)
7 publications, 14%
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Optica Publishing Group
6 publications, 12%
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Springer Nature
4 publications, 8%
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MDPI
3 publications, 6%
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AIP Publishing
3 publications, 6%
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Royal Society of Chemistry (RSC)
2 publications, 4%
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SPIE-Intl Soc Optical Eng
1 publication, 2%
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IOP Publishing
1 publication, 2%
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- We do not take into account publications without a DOI.
- Statistics recalculated weekly.