99 citations · 271 across the 4 of their papers we have counts for
5 papers · 1 filter
Programmable quantum simulation of 2D antiferromagnets with hundreds of Rydberg atoms
Pascal Scholl, Michael Schuler, Hannah J. Williams +9
Quantum simulation using synthetic systems is a promising route to solve outstanding quantum many-body problems in regimes where other approaches, including numerical ones, fail. M…
Realization of a density-dependent Peierls phase in a synthetic, spin-orbit coupled Rydberg system
Vincent Lienhard, Pascal Scholl, Sebastian Weber +8
We experimentally realize a Peierls phase in the hopping amplitude of excitations carried by Rydberg atoms, and observe the resulting characteristic chiral motion in a minimal setu…
Experimental realization of a symmetry protected topological phase of interacting bosons with Rydberg atoms
Sylvain de Léséleuc, Vincent Lienhard, Pascal Scholl +6
The concept of topological phases is a powerful framework to characterize ground states of quantum many-body systems that goes beyond the paradigm of symmetry breaking. While a few…
Local optical control of the resonant dipole-dipole interaction between Rydberg atoms
Sylvain de Léséleuc, Daniel Barredo, Vincent Lienhard +2
We report on the local control of the transition frequency of a spin- encoded in two Rydberg levels of an individual atom by applying a state-selective light shift using an ad…
Experimental investigations of the dipolar interactions between single Rydberg atoms
Antoine Browaeys, Daniel Barredo, Thierry Lahaye
This review summarizes experimental works performed over the last decade by several groups on the manipulation of a few individual interacting Rydberg atoms. These studies establis…