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Roadmap for optical metasurfaces
Metasurfaces have recently risen to prominence in optical research, providing unique
functionalities that can be used for imaging, beam forming, holography, polarimetry, and …
functionalities that can be used for imaging, beam forming, holography, polarimetry, and …
Waveguide quantum electrodynamics: Collective radiance and photon-photon correlations
This review describes the emerging field of waveguide quantum electrodynamics concerned
with the interaction of photons propagating in a waveguide with localized quantum emitters …
with the interaction of photons propagating in a waveguide with localized quantum emitters …
Metasurfaces for quantum photonics
Rapid progress in the development of metamaterials and metaphotonics allowed bulky
optical assemblies to be replaced with thin nanostructured films, often called metasurfaces …
optical assemblies to be replaced with thin nanostructured films, often called metasurfaces …
A subwavelength atomic array switched by a single Rydberg atom
Enhancing light–matter coupling at the level of single quanta is essential for numerous
applications in quantum science. The cooperative optical response of subwavelength atomic …
applications in quantum science. The cooperative optical response of subwavelength atomic …
Universality of Dicke superradiance in arrays of quantum emitters
SJ Masson, A Asenjo-Garcia - Nature Communications, 2022 - nature.com
Dicke superradiance is an example of emergence of macroscopic quantum coherence via
correlated dissipation. Starting from an initially incoherent state, a collection of excited atoms …
correlated dissipation. Starting from an initially incoherent state, a collection of excited atoms …
Fast single atom imaging for optical lattice arrays
High-resolution fluorescence imaging of ultracold atoms and molecules is paramount to
performing quantum simulation and computation in optical lattices and tweezers. Imaging …
performing quantum simulation and computation in optical lattices and tweezers. Imaging …
Continuous operation of large-scale atom arrays in optical lattices
F Gyger, M Ammenwerth, R Tao, H Timme… - Physical Review …, 2024 - APS
Scaling the size of assembled neutral-atom arrays trapped in optical lattices or optical
tweezers is an enabling step for a number of applications ranging from quantum simulations …
tweezers is an enabling step for a number of applications ranging from quantum simulations …
Quantum gas microscopy for single atom and spin detection
C Gross, WS Bakr - Nature Physics, 2021 - nature.com
A particular strength of ultracold quantum gases is the range of versatile detection methods
that are available. As they are based on atom–light interactions, the whole quantum optics …
that are available. As they are based on atom–light interactions, the whole quantum optics …
[HTML][HTML] Collective lattice resonances: Plasmonics and beyond
Engineering nanostructures with exceptionally high-Q resonances mediated by the Fano-
type hybridization between discrete states associated with the periodicity of the structure and …
type hybridization between discrete states associated with the periodicity of the structure and …
Superradiant and subradiant cavity scattering by atom arrays
We realize collective enhancement and suppression of light scattered by an array of tweezer-
trapped Rb 87 atoms positioned within a strongly coupled Fabry-Pérot optical cavity. We …
trapped Rb 87 atoms positioned within a strongly coupled Fabry-Pérot optical cavity. We …