Strong mutual interaction which correlates elementary excitations of quantum matter plays a key role in a range of emergent phenomena, from binding and condensation to quantum thermalization and many-body localization. Here, we employ a Rydberg quantum simulator to experimentally demonstrate strongly correlated spin transport in anisotropic Heisenberg magnets, where the magnon-magnon interaction can be tuned two orders of magnitude larger than the magnon hopping strength. In our approach, the motion of magnons is controlled by an induced spin-exchange interaction through far off-resonant driving, which enables coherent transport of a single Rydberg excitation across a chain of ground-state atoms. As the most prominent signature of a giant a...
Frustrated magnets gain a lot of interest due to promise of states with exotic properties, such as s...
We study experimentally the far-from-equilibrium dynamics in ferromagnetic Heisenberg quantum magnet...
Arrays of highly excited Rydberg atoms can be used as powerful quantum simulation platforms. Here, w...
Strong mutual interactions correlate elementary excitations of quantum matter and plays a key role i...
Strong mutual interactions correlate elementary excitations of quantum matter and plays a key role i...
Spin is the elementary unit of magnetism. The interactions between many spins give a material its ma...
Over the recent years coherent, time-periodic modulation has been established as a versatile tool fo...
Single atoms trapped in arrays of optical tweezers and excited to Rydberg states are a promising exp...
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...
International audienceSpin models are the prime example of simplified many-body Hamiltonians used to...
The ability to control and tune interactions in ultracold atomic gases has paved the way for the rea...
In this thesis, we present the realization of an isolated Heisenberg XXZ spin 1/2 system with an off...
Frustrated magnets gain a lot of interest due to promise of states with exotic properties, such as s...
The fields of quantum simulation with cold atoms [1] and quantum optics [2] are currently being mer...
Frustrated magnets gain a lot of interest due to promise of states with exotic properties, such as s...
We study experimentally the far-from-equilibrium dynamics in ferromagnetic Heisenberg quantum magnet...
Arrays of highly excited Rydberg atoms can be used as powerful quantum simulation platforms. Here, w...
Strong mutual interactions correlate elementary excitations of quantum matter and plays a key role i...
Strong mutual interactions correlate elementary excitations of quantum matter and plays a key role i...
Spin is the elementary unit of magnetism. The interactions between many spins give a material its ma...
Over the recent years coherent, time-periodic modulation has been established as a versatile tool fo...
Single atoms trapped in arrays of optical tweezers and excited to Rydberg states are a promising exp...
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...
International audienceSpin models are the prime example of simplified many-body Hamiltonians used to...
The ability to control and tune interactions in ultracold atomic gases has paved the way for the rea...
In this thesis, we present the realization of an isolated Heisenberg XXZ spin 1/2 system with an off...
Frustrated magnets gain a lot of interest due to promise of states with exotic properties, such as s...
The fields of quantum simulation with cold atoms [1] and quantum optics [2] are currently being mer...
Frustrated magnets gain a lot of interest due to promise of states with exotic properties, such as s...
We study experimentally the far-from-equilibrium dynamics in ferromagnetic Heisenberg quantum magnet...
Arrays of highly excited Rydberg atoms can be used as powerful quantum simulation platforms. Here, w...