Strong interactions can amplify quantum effects such that they become important on macroscopic scales. Controlling these coherently on a single-particle level is essential for the tailored preparation of strongly correlated quantum systems and opens up new prospects for quantum technologies. Rydberg atoms offer such strong interactions, which lead to extreme nonlinearities in laser-coupled atomic ensembles. As a result, multiple excitation of a micrometer-sized cloud can be blocked while the light-matter coupling becomes collectively enhanced. The resulting two-level system, often called a "superatom," is a valuable resource for quantum information, providing a collective qubit. Here, we report on the preparation of 2 orders of magnitude sc...
The ability to control and tune interactions in ultracold atomic gases has paved the way for the rea...
The ability to control and tune interactions in ultracold atomic gases has paved the way for the rea...
Ultracold atomic gases excited to strongly interacting Rydberg states are a promising system for qua...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
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 ...
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 ...
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...
The control of strongly interacting many-body systems enables the creation of tailored quantum matte...
The ability to control and tune interactions in ultracold atomic gases has paved the way for the rea...
The ability to control and tune interactions in ultracold atomic gases has paved the way for the rea...
Ultracold atomic gases excited to strongly interacting Rydberg states are a promising system for qua...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
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 ...
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 ...
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...
The control of strongly interacting many-body systems enables the creation of tailored quantum matte...
The ability to control and tune interactions in ultracold atomic gases has paved the way for the rea...
The ability to control and tune interactions in ultracold atomic gases has paved the way for the rea...
Ultracold atomic gases excited to strongly interacting Rydberg states are a promising system for qua...