© 2017 Optical Society of America. One print or electronic copy may be made for personal use only. Systematic reproduction and distribution, duplication of any material in this paper for a fee or for commercial purposes, or modifications of the content of this paper are prohibitedThere is an increasing scientific and technological interest in the design and implementation of nanoscale sources of quantum light. Here, we investigate the quantum statistics of the light scattered from a plasmonic nanocavity coupled to a mesoscopic ensemble of emitters under low coherent pumping. We present an analytical description of the intensity correlations taking place in these systems and unveil the fingerprint of plasmon-exciton-polaritons in them. Our f...
In this work sharp silver nanotips are analyzed and proposed as useful plasmonic tools to reduce the...
PublishedJournal Article"This is an author-created, un-copyedited version of an article published in...
Strong coupling of highly localized electromagnetic fields with quantum emitters has sparked a lot o...
We investigate the quantum-optical properties of the light emitted by a nanoparticle-on-mirror cavit...
There exists a growing interest in the properties of the light generated by hybrid systems involving...
Strong coupling between a single quantum emitter and an electromagnetic mode is one of the key effec...
Plasmonic cavities can confine electromagnetic radiation to deep sub-wavelength regimes. This facili...
Quantum plasmonics extends cavity quantum electrodynamics (cQED) concepts to the nanoscale, taking b...
In the light-matter strong coupling regime, the excited state of quantum emitters is inextricably li...
The interaction of emitters with plasmonic cavities (PCs) has been studied extensively during the pa...
Emission properties of a quantum emitter can be significantly modified inside nanometre-sized gaps b...
When a photonic environment hosts an emitter, it heavily influences its spontaneous emission. For an...
Here we present the theoretical foundation of the strong coupling phenomenon between quantum emitter...
For almost two decades, researchers have observed the preservation of the quantum statistical proper...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
In this work sharp silver nanotips are analyzed and proposed as useful plasmonic tools to reduce the...
PublishedJournal Article"This is an author-created, un-copyedited version of an article published in...
Strong coupling of highly localized electromagnetic fields with quantum emitters has sparked a lot o...
We investigate the quantum-optical properties of the light emitted by a nanoparticle-on-mirror cavit...
There exists a growing interest in the properties of the light generated by hybrid systems involving...
Strong coupling between a single quantum emitter and an electromagnetic mode is one of the key effec...
Plasmonic cavities can confine electromagnetic radiation to deep sub-wavelength regimes. This facili...
Quantum plasmonics extends cavity quantum electrodynamics (cQED) concepts to the nanoscale, taking b...
In the light-matter strong coupling regime, the excited state of quantum emitters is inextricably li...
The interaction of emitters with plasmonic cavities (PCs) has been studied extensively during the pa...
Emission properties of a quantum emitter can be significantly modified inside nanometre-sized gaps b...
When a photonic environment hosts an emitter, it heavily influences its spontaneous emission. For an...
Here we present the theoretical foundation of the strong coupling phenomenon between quantum emitter...
For almost two decades, researchers have observed the preservation of the quantum statistical proper...
Photon emitters placed in an optical cavity experience an environment that changes how they are coup...
In this work sharp silver nanotips are analyzed and proposed as useful plasmonic tools to reduce the...
PublishedJournal Article"This is an author-created, un-copyedited version of an article published in...
Strong coupling of highly localized electromagnetic fields with quantum emitters has sparked a lot o...