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Resonant leaky modes in all-dielectric metasystems: Fundamentals and applications
All-dielectric metamaterials and metasurfaces have been demonstrated as ideal platforms to
manipulate electromagnetic waves and enhance light–matter interaction. Analogous to …
manipulate electromagnetic waves and enhance light–matter interaction. Analogous to …
Enhanced light–matter interaction in two-dimensional transition metal dichalcogenides
Abstract Two-dimensional (2D) transition metal dichalcogenide (TMDC) materials, such as
MoS 2, WS 2, MoSe 2, and WSe 2, have received extensive attention in the past decade due …
MoS 2, WS 2, MoSe 2, and WSe 2, have received extensive attention in the past decade due …
Light interaction with photonic and plasmonic resonances
In this Review, the theory and applications of optical micro‐and nano‐resonators are
presented from the underlying concept of their natural resonances, the so‐called quasi …
presented from the underlying concept of their natural resonances, the so‐called quasi …
Novel nanostructures and materials for strong light–matter interactions
Quantum mechanical interactions between electromagnetic radiation and matter underlie a
broad spectrum of optical phenomena. Strong light-matter interactions result in the well …
broad spectrum of optical phenomena. Strong light-matter interactions result in the well …
All-dielectric nanophotonics: the quest for better materials and fabrication techniques
All-dielectric nanophotonics is an exciting and rapidly develo** area of nano-optics that
utilizes the resonant behavior of high-index low-loss dielectric nanoparticles to enhance …
utilizes the resonant behavior of high-index low-loss dielectric nanoparticles to enhance …
An electromagnetic multipole expansion beyond the long-wavelength approximation
The multipole expansion is a key tool in the study of light–matter interactions. All the
information about the radiation of and coupling to electromagnetic fields of a given charge …
information about the radiation of and coupling to electromagnetic fields of a given charge …
Simultaneous inverse design of materials and structures via deep learning: demonstration of dipole resonance engineering using core–shell nanoparticles
Recent introduction of data-driven approaches based on deep-learning technology has
revolutionized the field of nanophotonics by allowing efficient inverse design methods. In …
revolutionized the field of nanophotonics by allowing efficient inverse design methods. In …
Light-emitting metasurfaces
Photonic metasurfaces, that is, two-dimensional arrangements of designed plasmonic or
dielectric resonant scatterers, have been established as a successful concept for controlling …
dielectric resonant scatterers, have been established as a successful concept for controlling …
All-dielectric colored metasurfaces with silicon Mie resonators
The photonic resonances hosted by nanostructures provide vivid colors that can be used as
color filters instead of organic colors and pigments in photodetectors and printing …
color filters instead of organic colors and pigments in photodetectors and printing …
All-dielectric resonant meta-optics lightens up
All-dielectric resonant nanophotonics is a rapidly develo** research field driven by its
exceptional applications for creating low-loss nanoscale metadevices. The tight confinement …
exceptional applications for creating low-loss nanoscale metadevices. The tight confinement …