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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 …
The rise and current status of polaritonic photochemistry and photophysics
The interaction between molecular electronic transitions and electromagnetic fields can be
enlarged to the point where distinct hybrid light–matter states, polaritons, emerge. The …
enlarged to the point where distinct hybrid light–matter states, polaritons, emerge. The …
Superscattering emerging from the physics of bound states in the continuum
We study the Mie-like scattering from an open subwavelength resonator made of a high-
index dielectric material, when its parameters are tuned to the regime of interfering …
index dielectric material, when its parameters are tuned to the regime of interfering …
[PDF][PDF] All-dielectric χ(2) metasurfaces: recent progress
Optical metasurfaces, ie arrays of nanoantennas with sub-wavelength size and separation,
enable the manipulation of light-matter interactions in miniaturized optical components with …
enable the manipulation of light-matter interactions in miniaturized optical components with …
Nonradiating photonics with resonant dielectric nanostructures
Nonradiating sources of energy have traditionally been studied in quantum mechanics and
astrophysics but have received very little attention in the photonics community. This situation …
astrophysics but have received very little attention in the photonics community. This situation …
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 …
Plasmonic phenomena in molecular junctions: principles and applications
Molecular junctions are building blocks for constructing future nanoelectronic devices that
enable the investigation of a broad range of electronic transport properties within nanoscale …
enable the investigation of a broad range of electronic transport properties within nanoscale …
Engineering quantum light sources with flat optics
Quantum light sources are essential building blocks for many quantum technologies,
enabling secure communication, powerful computing, and precise sensing and imaging …
enabling secure communication, powerful computing, and precise sensing and imaging …
Toward molecular chiral polaritons
Coupling between light and material excitations underlies a wide range of optical
phenomena. Polaritons are eigenstates of a coupled system with a hybridized wave …
phenomena. Polaritons are eigenstates of a coupled system with a hybridized wave …
Multipolar origin of bound states in the continuum
Metasurfaces based on resonant subwavelength photonic structures enable novel methods
of wavefront control and light focusing, underpinning a new generation of flat-optics devices …
of wavefront control and light focusing, underpinning a new generation of flat-optics devices …