An array of radiatively coupled emitters provides a platform for generating, storing and manipulating quantum light. However, the simultaneous positioning and tuning of several …
We investigate the quantum-optical properties of the light emitted by a nanoparticle-on- mirror cavity filled with a single quantum emitter. Inspired by recent experiments, we model a …
J Li, S Shen, C Ding, Y Wu - Physical Review A, 2021 - APS
Plasmonic structures such as metal nanoparticles (MNPs) provide a promising way to explore and control light in a solid-state environment. Here, we study a hybrid system …
S Shen, Z Wu, J Li, Y Wu - Physical Review A, 2021 - APS
Metal nanoparticles (MNPs) possess the intriguing property of enhancing and limiting the energy of light field to subwavelength scale, which have attracted extensive attention in …
CJ Yang, JH An, HQ Lin - Physical Review Research, 2019 - APS
Confining light to scales beyond the diffraction limit, quantum plasmonics supplies an ideal platform to explore strong light-matter couplings. The light-induced localized surface …
Hybrid systems made of quantum emitters and plasmonic nanoresonators offer a unique platform to implement artificial atoms with completely novel optical responses that are not …
MA Antón, S Maede-Razavi, F Carreño, I Thanopulos… - Physical Review A, 2017 - APS
A two-level quantum emitter with broken inversion symmetry simultaneously driven by an optical field and a microwave field that couples to the permanent dipole's moment is …
Highly integrated single-photon sources are key components in future quantum-optical circuits. Whereas the probabilistic generation of single photons can routinely be done by …
Abstract Properties of plasmonic materials are associated with surface plasmons—the electromagnetic excitations coupled to coherent electron charge density oscillations on a …