Optically resonant dielectric nanostructures
Agency for Science, Technology and Research · Data Storage Institute · +3 more institutions
Abstract
Rapid progress in nanophotonics is driven by the ability of optically resonant nanostructures to enhance near-field effects controlling far-field scattering through intermodal interference. A majority of such effects are usually associated with plasmonic nanostructures. Recently, a new branch of nanophotonics has emerged that seeks to manipulate the strong, optically induced electric and magnetic Mie resonances in dielectric nanoparticles with high refractive index. In the design of optical nanoantennas and metasurfaces, dielectric nanoparticles offer the opportunity for reducing dissipative losses and achieving large resonant enhancement of both electric and magnetic fields. We review this rapidly developing…
Citation impact
- FWCI
- 110.98
- Percentile
- 100%
- References
- 114
Authors
5- AIArseniy I. Kuznetsov
Agency for Science, Technology and Research, Data Storage Institute
- AEAndrey E. Miroshnichenko
Australian National University
- MLMark L. BrongersmaCorresponding
Stanford University
- YSYuri S. KivsharCorresponding
Australian National University
- BLBoris Luk’yanchukCorresponding
Agency for Science, Technology and Research, Data Storage Institute, Nanyang Technological University
Topics & keywords
- Dielectric
- Nanostructure
- Optoelectronics
- Materials science
- Nanotechnology