In an ensemble of laser-driven atoms involving strongly interacting Rydberg states, the excitation probability is usually strongly suppressed. In contrast, here we identify a regime in which the steady-state Rydberg excited fraction is enhanced by the interaction. This effect is associated with the build-up of many-body coherences, induced by coherent multi-photon excitations between collective states. The excitation enhancement should be observable under currently-existing experimental conditions, and may serve as a direct probe for the presence of coherent multi-photon dynamics involving collective quantum states
International audienceThe control of strongly interacting many-body systems enables the creation of ...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
In an ensemble of laser-driven atoms involving strongly interacting Rydberg states, the excitation p...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
When atoms are excited to high-lying Rydberg states they interact strongly with dipolar forces. The ...
High optical nonlinearities can be achieved at the single photon level by coupling the photon states...
When atoms are excited to high-lying Rydberg states they interact strongly with dipolar forces. The ...
Atoms in high-lying Rydberg states strongly interact with each other via the dipole-dipole or van-de...
This work reports on the real-time detection of internal-state dynamics of cold 87Rb atoms being exc...
We study an open quantum system of atoms with a long-range Rydberg interaction, laser driving, and s...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
We study an open quantum system of atoms with a long-range Rydberg interaction, laser driving, and s...
Atoms in high-lying Rydberg states strongly interact with each other via the dipole-dipole or van de...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
In an ensemble of laser-driven atoms involving strongly interacting Rydberg states, the excitation p...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
When atoms are excited to high-lying Rydberg states they interact strongly with dipolar forces. The ...
High optical nonlinearities can be achieved at the single photon level by coupling the photon states...
When atoms are excited to high-lying Rydberg states they interact strongly with dipolar forces. The ...
Atoms in high-lying Rydberg states strongly interact with each other via the dipole-dipole or van-de...
This work reports on the real-time detection of internal-state dynamics of cold 87Rb atoms being exc...
We study an open quantum system of atoms with a long-range Rydberg interaction, laser driving, and s...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
We study an open quantum system of atoms with a long-range Rydberg interaction, laser driving, and s...
Atoms in high-lying Rydberg states strongly interact with each other via the dipole-dipole or van de...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
International audienceThe control of strongly interacting many-body systems enables the creation of ...