Applications of hybrid metal‐dielectric nanostructures: state of the art
Enhancing the light‐matter interactions is important for many different applications like
sensing, surface enhanced spectroscopies, solar energy harvesting, and for quantum effects …
sensing, surface enhanced spectroscopies, solar energy harvesting, and for quantum effects …
Strong light–matter interactions enabled by polaritons in atomically thin materials
Polaritons, resulting from the hybridization of light with polarization charges formed at the
boundaries between media with positive and negative dielectric response functions, can …
boundaries between media with positive and negative dielectric response functions, can …
Self-assembled photonic cavities with atomic-scale confinement
Despite tremendous progress in research on self-assembled nanotechnological building
blocks, such as macromolecules, nanowires and two-dimensional materials, synthetic self …
blocks, such as macromolecules, nanowires and two-dimensional materials, synthetic self …
Hybrid cavity-antenna architecture for strong and tunable sideband-selective molecular Raman scattering enhancement
Plasmon resonances at the surface of metallic antennas allow for extreme enhancement of
Raman scattering. Intrinsic to plasmonics, however, is that extreme field confinement lacks …
Raman scattering. Intrinsic to plasmonics, however, is that extreme field confinement lacks …
Emission enhancement of erbium in a reverse nanofocusing waveguide
Since Purcell's seminal report 75 years ago, electromagnetic resonators have been used to
control light-matter interactions to make brighter radiation sources and unleash …
control light-matter interactions to make brighter radiation sources and unleash …
Ultrafast quantum photonics enabled by coupling plasmonic nanocavities to strongly radiative antennas
Quantum emitters coupled to plasmonic nanostructures can act as exceptionally bright
sources of single photons, operating at room temperature. Plasmonic mode volumes …
sources of single photons, operating at room temperature. Plasmonic mode volumes …
Observation of cooperative Purcell enhancements in antenna–cavity hybrids
Localizing light to nanoscale volumes through nanoscale resonators that are low loss and
precisely tailored in spectrum to properties of matter is crucial for classical and quantum light …
precisely tailored in spectrum to properties of matter is crucial for classical and quantum light …
On the applicability of quantum-optical concepts in strong-coupling nanophotonics
Rooted in quantum optics and benefiting from its well-established foundations, strong
coupling in nanophotonics has experienced increasing popularity in recent years. With …
coupling in nanophotonics has experienced increasing popularity in recent years. With …
Quantized quasinormal-mode description of nonlinear cavity-QED effects from coupled resonators with a Fano-like resonance
We employ a recently developed quantization scheme for quasinormal modes (QNMs) to
study a nonperturbative open cavity–QED system consisting of a hybrid metal-dielectric …
study a nonperturbative open cavity–QED system consisting of a hybrid metal-dielectric …
Hybrid quantum nanophotonic devices with color centers in nanodiamonds
Optically active color centers in nanodiamonds offer unique opportunities for generating and
manipulating quantum states of light. These mechanically, chemically, and optically robust …
manipulating quantum states of light. These mechanically, chemically, and optically robust …