We consider an ensemble of ultracold bosonic atoms within a near-planar cavity, driven by a far detuned laser whose phase is modulated at a frequency comparable to the transverse cavity mode spacing. We show that a strong, dispersive atom-photon coupling can be reached for many transverse cavity modes at once. The resulting Floquet polaritons involve a superposition of a set of cavity modes with a density excitation of the atomic cloud. The mutual interactions between these modes lead to distinct avoided crossings between the polaritons. Increasing the laser drive intensity, a low-lying multimode Floquet polariton softens and eventually becomes undamped, corresponding to the transition to a superradiant, self-organized phase. We demonstrate...
For a driven-dissipative quantum many-body system prepared in a spontaneous broken-symmetry steady s...
F. M. M. acknowledges financial support from the programs Ramón y Cajal, MINECO (MAT2011-22997), CAM...
When photoactive molecules interact strongly with confined light modes, new hybrid light–matter stat...
We consider an ensemble of ultracold bosonic atoms within a near-planar cavity, driven by a far detu...
The paradigm of N quantum emitters coupled to a single cavity mode appears in many situations rangin...
We report multistate optical switching among high-order bouncing-ball modes (“ripples”) and whisperi...
We analyze the quantum phase transition-like behavior in the lowest energy state of a two-site coupl...
Optical cavity QED provides a platform with which to explore quantum many-body physics in driven-dis...
We study ultracold atoms trapped in a one-dimensional optical lattice prepared in a Mott insulator ...
© 2018 American Physical Society. We investigate the physics of a gas of ultracold atoms coupled to ...
Here, we report an experimental realization of multimode strong coupling in cavity quantum electrody...
In high finesse semiconductor microcavities containing quantum wells, photons emitted by the quantum...
Polaritons are lightweight bosonic quasiparticles that result from the strong coupling of light with...
THESIS 6786Strong coupling between an atom and a cavity field is a well established phenomenon in th...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
For a driven-dissipative quantum many-body system prepared in a spontaneous broken-symmetry steady s...
F. M. M. acknowledges financial support from the programs Ramón y Cajal, MINECO (MAT2011-22997), CAM...
When photoactive molecules interact strongly with confined light modes, new hybrid light–matter stat...
We consider an ensemble of ultracold bosonic atoms within a near-planar cavity, driven by a far detu...
The paradigm of N quantum emitters coupled to a single cavity mode appears in many situations rangin...
We report multistate optical switching among high-order bouncing-ball modes (“ripples”) and whisperi...
We analyze the quantum phase transition-like behavior in the lowest energy state of a two-site coupl...
Optical cavity QED provides a platform with which to explore quantum many-body physics in driven-dis...
We study ultracold atoms trapped in a one-dimensional optical lattice prepared in a Mott insulator ...
© 2018 American Physical Society. We investigate the physics of a gas of ultracold atoms coupled to ...
Here, we report an experimental realization of multimode strong coupling in cavity quantum electrody...
In high finesse semiconductor microcavities containing quantum wells, photons emitted by the quantum...
Polaritons are lightweight bosonic quasiparticles that result from the strong coupling of light with...
THESIS 6786Strong coupling between an atom and a cavity field is a well established phenomenon in th...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
For a driven-dissipative quantum many-body system prepared in a spontaneous broken-symmetry steady s...
F. M. M. acknowledges financial support from the programs Ramón y Cajal, MINECO (MAT2011-22997), CAM...
When photoactive molecules interact strongly with confined light modes, new hybrid light–matter stat...