4.8 Article

Transverse Scattering and Generalized Kerker Effects in All-Dielectric Mie-Resonant Metaoptics

期刊

PHYSICAL REVIEW LETTERS
卷 122, 期 19, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.122.193905

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资金

  1. Russian Foundation for Basic Research [18-02-00414, 18-52-00005]
  2. Ministry of Education and Science of the Russian Federation [3.4982.2017/6.7]
  3. Israeli Innovation Authority-Kamin Program [62045]
  4. Strategic Fund of the Australian National University
  5. Russian Science Foundation [17-79-20379, 17-72-10230]
  6. Deutsche Forschungsgemeinschaft (DFG) within the Cluster of Excellence PhoenixD [EXC 2122, 390833453]
  7. Russian Science Foundation [17-79-20379, 17-72-10230] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

All-dielectric resonant nanophotonics lies at the heart of modern optics and nanotechnology due to the unique possibilities to control scattering of light from high-index dielectric nanoparticles and metasurfaces. One of the important concepts of dielectric Mie-resonant nanophotonics is associated with the Kerker effect that drives the unidirectional scattering of light from nanoantennas and Huygens metasurfaces. Here we suggest and demonstrate experimentally a novel effect manifested in the nearly complete simultaneous suppression of both forward and backward scattered fields. This effect is governed by the Fano resonance of an electric dipole and off-resonant quadrupoles, providing necessary phases and amplitudes of the scattered fields to achieve the transverse scattering. We extend this concept to dielectric metasurfaces that demonstrate zero reflection with transverse scattering and strong field enhancement for resonant light filtering, nonlinear effects, and sensing.

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