Emission properties of a quantum emitter can be significantly modified inside nanometre-sized gaps between two plasmonic nanostructures. This forms a nanoscopic optical cavity which allows single-molecule detection and single-molecule strong-coupling at room temperature. However, plasmonic resonances of a plasmonic nanocavity are highly sensitive to the exact gap morphology. In this article, we shed light on the effect of gap morphology on the plasmonic resonances of a faceted nanoparticle-on-mirror (NPoM) nanocavity and their interaction with quantum emitters. We find that with increasing facet width the NPoM nanocavity provides weaker field enhancement and thus less coupling strength to a single quantum emitter since the effective mode vo...
The optical properties of molecules can be changed by the presence of a cavity. If the cavity is res...
Strong coupling of highly localized electromagnetic fields with quantum emitters has sparked a lot o...
© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. S...
Emission properties of a quantum emitter can be significantly modified inside nanometre-sized gaps b...
Optical properties of a quantum emitter are drastically modified inside a nanometer-sized gap betwee...
When a photonic environment hosts an emitter, it heavily influences its spontaneous emission. For an...
The large losses of plasmonic nanocavities, orders of magnitude beyond those of photonic dielectric ...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
We investigate the quantum-optical properties of the light emitted by a nanoparticle-on-mirror cavit...
Generalizing a previously developed analytical model of metal-enhanced fluorescence to the case of t...
Photon emitters placed into an optical cavity will experience a surrounding photonic environment cha...
Nanogaps supporting cavity plasmonic modes with unprecedented small mode volume are attractive platf...
Interactions between a single emitter and cavity provide the archetypical system for fundamental qua...
Quantum plasmonics extends cavity quantum electrodynamics (cQED) concepts to the nanoscale, taking b...
Hensen M, Heilpern T, Gray SK, Pfeiffer W. Strong Coupling and Entanglement of Quantum Emitters Embe...
The optical properties of molecules can be changed by the presence of a cavity. If the cavity is res...
Strong coupling of highly localized electromagnetic fields with quantum emitters has sparked a lot o...
© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. S...
Emission properties of a quantum emitter can be significantly modified inside nanometre-sized gaps b...
Optical properties of a quantum emitter are drastically modified inside a nanometer-sized gap betwee...
When a photonic environment hosts an emitter, it heavily influences its spontaneous emission. For an...
The large losses of plasmonic nanocavities, orders of magnitude beyond those of photonic dielectric ...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
We investigate the quantum-optical properties of the light emitted by a nanoparticle-on-mirror cavit...
Generalizing a previously developed analytical model of metal-enhanced fluorescence to the case of t...
Photon emitters placed into an optical cavity will experience a surrounding photonic environment cha...
Nanogaps supporting cavity plasmonic modes with unprecedented small mode volume are attractive platf...
Interactions between a single emitter and cavity provide the archetypical system for fundamental qua...
Quantum plasmonics extends cavity quantum electrodynamics (cQED) concepts to the nanoscale, taking b...
Hensen M, Heilpern T, Gray SK, Pfeiffer W. Strong Coupling and Entanglement of Quantum Emitters Embe...
The optical properties of molecules can be changed by the presence of a cavity. If the cavity is res...
Strong coupling of highly localized electromagnetic fields with quantum emitters has sparked a lot o...
© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. S...