Photon antibunching in the light scattered by single quantum emitters is one of the hallmarks of quantum optics, providing an unequivocal demonstration of the quantized nature of the electromagnetic field. Antibunching can be intuitively understood by the need for a two-level system lying in its lower state after emitting a photon to be re-excited into the upper one before a second emission can take place. Here we show that such a picture breaks down in the ultrastrong light–matter coupling regime, when the coupling strength becomes comparable to the bare emitter frequency. Specializing to the cases of both a natural and an artificial atom, we thus show that a single emitter coupled to a photonic resonator can emit bunched light. The result...
Ultrastrong coupling between light and matter has, in the past decade, transitioned from a theoretic...
Cavity quantum electrodynamics (cavity QED) is conventionally described by the Jaynes- or Tavis-Cumm...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single...
In circuit quantum electrodynamics1–10 (QED), where super-conducting artificial atoms are coupled to...
The photon statistics of the light emitted from an atomic ensemble into a single field mode of an op...
Controlling the way light interacts with material excitations is at the heart of cavity quantum elec...
We demonstrate photon-mediated interactions between two individually trapped atoms coupled to a nano...
Controlling the way light interacts with material excitations is at the heart of cavity quantum elec...
Dynamic coupling of cavities to a quantum network is of major interest to distributed quantum inform...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency ?R. When ?R is la...
We observe antibunching in the photons emitted from a strongly-coupled single quantum dot and pillar...
10 págs.; 8 figs.; 3 apps.We study effective light-matter interactions in a circuit QED system consi...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
APS March Meeting 2017, New Orleans, Louisiana, March 13–17, 2017. -- http://meetings.aps.org/Meetin...
Ultrastrong coupling between light and matter has, in the past decade, transitioned from a theoretic...
Cavity quantum electrodynamics (cavity QED) is conventionally described by the Jaynes- or Tavis-Cumm...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single...
In circuit quantum electrodynamics1–10 (QED), where super-conducting artificial atoms are coupled to...
The photon statistics of the light emitted from an atomic ensemble into a single field mode of an op...
Controlling the way light interacts with material excitations is at the heart of cavity quantum elec...
We demonstrate photon-mediated interactions between two individually trapped atoms coupled to a nano...
Controlling the way light interacts with material excitations is at the heart of cavity quantum elec...
Dynamic coupling of cavities to a quantum network is of major interest to distributed quantum inform...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single ...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency ?R. When ?R is la...
We observe antibunching in the photons emitted from a strongly-coupled single quantum dot and pillar...
10 págs.; 8 figs.; 3 apps.We study effective light-matter interactions in a circuit QED system consi...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
APS March Meeting 2017, New Orleans, Louisiana, March 13–17, 2017. -- http://meetings.aps.org/Meetin...
Ultrastrong coupling between light and matter has, in the past decade, transitioned from a theoretic...
Cavity quantum electrodynamics (cavity QED) is conventionally described by the Jaynes- or Tavis-Cumm...
Cavity quantum electrodynamics (QED) studies the interaction between a quantum emitter and a single...