International audienceSpin models are the prime example of simplified many-body Hamiltonians used to model complex, strongly correlated real-world materials1. However, despite the simplified character of such models, their dynamics often cannot be simulated exactly on classical computers when the number of particles exceeds a few tens. For this reason, quantum simulation2 of spin Hamiltonians using the tools of atomic and molecular physics has become a very active field over the past years, using ultracold atoms3 or molecules4 in optical lattices, or trapped ions5. All of these approaches have their own strengths and limitations. Here we report an alternative platform for the study of spin systems, using individual atoms trapped in tunable ...
Ultracold atoms in optical lattices are ideal to study fundamentally new quantum many-body systems(1...
Ultracold atoms in optical lattices are ideal to study fundamentally new quantum many-body systems(1...
Certain classes of quantum many-body systems, including those supporting phenomena like high-$T_c$ s...
Single atoms trapped in arrays of optical tweezers and excited to Rydberg states are a promising exp...
Quantum simulation using synthetic systems is a promising route to solve outstanding quantum many-bo...
The main objective of quantum simulation is an in-depth understanding of many-body physics, which is...
Over the last years, a new platform for quantum technologies has emerged. It is based on arrays of s...
Des atomes individuels piégés dans des matrices de pinces optiques et excités vers des états de Rydb...
In this thesis, we measure the coherent dynamics and the pair correlations of Rydberg excitations in...
In this thesis, we measure the coherent dynamics and the pair correlations of Rydberg excitations in...
We use the resonant dipole-dipole interaction between Rydberg atoms and a periodic external microwav...
Rydberg-based platforms, involving single atoms trapped in arrays of optical tweezers and excited to...
Single atoms trapped in arrays of optical tweezers and excited to Rydberg states are a promising exp...
Single atoms trapped in arrays of optical tweezers and excited to Rydberg states are a promising exp...
Rydberg-based platforms, involving single atoms trapped in arrays of optical tweezers and excited to...
Ultracold atoms in optical lattices are ideal to study fundamentally new quantum many-body systems(1...
Ultracold atoms in optical lattices are ideal to study fundamentally new quantum many-body systems(1...
Certain classes of quantum many-body systems, including those supporting phenomena like high-$T_c$ s...
Single atoms trapped in arrays of optical tweezers and excited to Rydberg states are a promising exp...
Quantum simulation using synthetic systems is a promising route to solve outstanding quantum many-bo...
The main objective of quantum simulation is an in-depth understanding of many-body physics, which is...
Over the last years, a new platform for quantum technologies has emerged. It is based on arrays of s...
Des atomes individuels piégés dans des matrices de pinces optiques et excités vers des états de Rydb...
In this thesis, we measure the coherent dynamics and the pair correlations of Rydberg excitations in...
In this thesis, we measure the coherent dynamics and the pair correlations of Rydberg excitations in...
We use the resonant dipole-dipole interaction between Rydberg atoms and a periodic external microwav...
Rydberg-based platforms, involving single atoms trapped in arrays of optical tweezers and excited to...
Single atoms trapped in arrays of optical tweezers and excited to Rydberg states are a promising exp...
Single atoms trapped in arrays of optical tweezers and excited to Rydberg states are a promising exp...
Rydberg-based platforms, involving single atoms trapped in arrays of optical tweezers and excited to...
Ultracold atoms in optical lattices are ideal to study fundamentally new quantum many-body systems(1...
Ultracold atoms in optical lattices are ideal to study fundamentally new quantum many-body systems(1...
Certain classes of quantum many-body systems, including those supporting phenomena like high-$T_c$ s...