Realizing strong coupling between a single quantum emitter (QE) and an optical cavity is of crucial importance in the context of various quantum optical applications. Although Rabi splitting of single quantum emitters coupled to high-Q classical cavities has been reported in numerous configurations, attaining single emitter Rabi splitting with a plasmonic nanostructure remains a challenge. In particular, strong coupling at the single QE regime would open the path for the realization of single-photon nonlinearities. In this paper, we derive a plasmon quantization procedure for systems consisting of a single QE located in the gap of a nanoantenna. This procedure leads to the description of the quantum dynamics by a master equation for the sta...
Hensen M, Heilpern T, Gray SK, Pfeiffer W. Strong Coupling and Entanglement of Quantum Emitters Embe...
Optical properties of a quantum emitter are drastically modified inside a nanometer-sized gap betwee...
© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. S...
In the light-matter strong coupling regime, the excited state of quantum emitters is inextricably li...
Quantum plasmonics extends cavity quantum electrodynamics (cQED) concepts to the nanoscale, taking b...
When a photonic environment hosts an emitter, it heavily influences its spontaneous emission. For an...
Strong coupling between a single quantum emitter and an electromagnetic mode is one of the key effec...
Strong light-matter interactions in both the single-emitter and collective strong coupling regimes a...
We report theoretical evidence that bulk nonlinear materials weakly interacting with highly localize...
Emission properties of a quantum emitter can be significantly modified inside nanometre-sized gaps b...
The interaction of emitters with plasmonic cavities (PCs) has been studied extensively during the pa...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
Strong coupling of highly localized electromagnetic fields with quantum emitters has sparked a lot o...
An emitter in the vicinity of a metal nanostructure is quenched by its decay through nonradiative ch...
Interactions between a single emitter and cavity provide the archetypical system for fundamental qua...
Hensen M, Heilpern T, Gray SK, Pfeiffer W. Strong Coupling and Entanglement of Quantum Emitters Embe...
Optical properties of a quantum emitter are drastically modified inside a nanometer-sized gap betwee...
© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. S...
In the light-matter strong coupling regime, the excited state of quantum emitters is inextricably li...
Quantum plasmonics extends cavity quantum electrodynamics (cQED) concepts to the nanoscale, taking b...
When a photonic environment hosts an emitter, it heavily influences its spontaneous emission. For an...
Strong coupling between a single quantum emitter and an electromagnetic mode is one of the key effec...
Strong light-matter interactions in both the single-emitter and collective strong coupling regimes a...
We report theoretical evidence that bulk nonlinear materials weakly interacting with highly localize...
Emission properties of a quantum emitter can be significantly modified inside nanometre-sized gaps b...
The interaction of emitters with plasmonic cavities (PCs) has been studied extensively during the pa...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
Strong coupling of highly localized electromagnetic fields with quantum emitters has sparked a lot o...
An emitter in the vicinity of a metal nanostructure is quenched by its decay through nonradiative ch...
Interactions between a single emitter and cavity provide the archetypical system for fundamental qua...
Hensen M, Heilpern T, Gray SK, Pfeiffer W. Strong Coupling and Entanglement of Quantum Emitters Embe...
Optical properties of a quantum emitter are drastically modified inside a nanometer-sized gap betwee...
© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. S...