The ability to control and tune interactions in ultracold atomic gases has paved the way for the realization of new phases of matter. So far, experiments have achieved a high degree of control over short-range interactions, but the realization of long-range interactions has become a central focus of research because it would open up a new realm of many-body physics. Rydberg atoms are highly suited to this goal because the van der Waals forces between them are many orders of magnitude larger than those between ground-state atoms. Consequently, mere laser excitation of ultracold gases can cause strongly correlated many-body states to emerge directly when atoms are transferred to Rydberg states. A key example is a quantum crystal composed of c...
Many-body correlations govern a variety of important quantum phenomena such as the emergence of supe...
The observation of strongly interacting many-body phenomena in atomic gases typically requires ultra...
We show that Rydberg states in an ultracold gas can be excited with strongly preferred nearest-neigh...
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...
We experimentally study the full counting statistics of few-body Rydberg aggregates excited from a q...
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...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
Interacting ultracold atomic quantum gases provide an ideal test bed to study strongly correlated qu...
The dynamics of a cloud of ultra-cold two-level atoms is studied at off-resonant laser driving to a ...
The strong interactions between Rydberg excitations can result in spatial correlations between the e...
The strong interactions between Rydberg excitations can result in spatial correlations between the e...
Many-body correlations govern a variety of important quantum phenomena such as the emergence of supe...
The observation of strongly interacting many-body phenomena in atomic gases typically requires ultra...
We show that Rydberg states in an ultracold gas can be excited with strongly preferred nearest-neigh...
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...
We experimentally study the full counting statistics of few-body Rydberg aggregates excited from a q...
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...
Strong interactions can amplify quantum effects such that they become important on macroscopic scale...
Interacting ultracold atomic quantum gases provide an ideal test bed to study strongly correlated qu...
The dynamics of a cloud of ultra-cold two-level atoms is studied at off-resonant laser driving to a ...
The strong interactions between Rydberg excitations can result in spatial correlations between the e...
The strong interactions between Rydberg excitations can result in spatial correlations between the e...
Many-body correlations govern a variety of important quantum phenomena such as the emergence of supe...
The observation of strongly interacting many-body phenomena in atomic gases typically requires ultra...
We show that Rydberg states in an ultracold gas can be excited with strongly preferred nearest-neigh...