In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency ?R. When ?R is larger than radiative and nonradiative loss rates, the system eigenstates (polaritons) are linear superposition of photonic and electronic excitations, a condition actively investigated in diverse physical implementations. Recently, a quantum electrodynamic regime (ultrastrong coupling) was predicted when ?R becomes comparable to the transition frequency. Here we report signatures of this regime in a quantum-well intersubband microcavity. Measuring the cavity-polariton dispersion in a room-temperature linear optical experiment, we directly observe the antiresonant light-matter coupling and the photon-energy renormalization of the vacuum field
The dipole coupling strength g between cavity photons and quantum well excitons determines the regim...
[[abstract]]As semiconductor fabrication technology developed, it became possible to fabricate high-...
The dipole coupling strength g between cavity photons and quantum well excitons determines the regim...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency Omega(R). When Om...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency Omega(R). When Om...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency Omega_R. When Ome...
International audienceIn a microcavity, light-matter coupling is quantified by the vacuum Rabi frequ...
The research work presented in this thesis is focused on the study of the optoelectronic coupling be...
The research work presented in this thesis is focused on the study of the optoelectronic coupling be...
Final version accepted in PRBWe present a quantum description of a planar microcavity photon mode st...
Controlling the way light interacts with material excitations is at the heart of cavity quantum elec...
Final version accepted in PRBWe present a quantum description of a planar microcavity photon mode st...
Controlling the way light interacts with material excitations is at the heart of cavity quantum elec...
Controlling the way light interacts with material excitations is at the heart of cavity quantum elec...
We present a full quantum theory for the dissipative dynamics of an optical cavity in the ultra-stro...
The dipole coupling strength g between cavity photons and quantum well excitons determines the regim...
[[abstract]]As semiconductor fabrication technology developed, it became possible to fabricate high-...
The dipole coupling strength g between cavity photons and quantum well excitons determines the regim...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency Omega(R). When Om...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency Omega(R). When Om...
In a microcavity, light-matter coupling is quantified by the vacuum-Rabi frequency Omega_R. When Ome...
International audienceIn a microcavity, light-matter coupling is quantified by the vacuum Rabi frequ...
The research work presented in this thesis is focused on the study of the optoelectronic coupling be...
The research work presented in this thesis is focused on the study of the optoelectronic coupling be...
Final version accepted in PRBWe present a quantum description of a planar microcavity photon mode st...
Controlling the way light interacts with material excitations is at the heart of cavity quantum elec...
Final version accepted in PRBWe present a quantum description of a planar microcavity photon mode st...
Controlling the way light interacts with material excitations is at the heart of cavity quantum elec...
Controlling the way light interacts with material excitations is at the heart of cavity quantum elec...
We present a full quantum theory for the dissipative dynamics of an optical cavity in the ultra-stro...
The dipole coupling strength g between cavity photons and quantum well excitons determines the regim...
[[abstract]]As semiconductor fabrication technology developed, it became possible to fabricate high-...
The dipole coupling strength g between cavity photons and quantum well excitons determines the regim...