Resonant laser excitation of multiple Rydberg atoms are prohibited, leading to Rydberg blockade, when the long-range van der Waals interactions are stronger than the laser-atom coupling. Rydberg blockade can be violated, i.e., simultaneous excitation of more than one Rydberg atom, by off-resonant laser excitation, causing an excitation antiblockade. Rydberg antiblockade gives rise to strongly correlated many-body dynamics and spin-orbit coupling and also finds quantum computation applications. Instead of commonly used van der Waals interactions, we investigate antiblockade dynamics of two Rydberg atoms interacting via dipole-dipole exchange interactions. We study typical situations in current Rydberg atom experiments, where different types ...
Rydberg atoms, with their giant electronic orbitals, exhibit dipole-dipole interaction reaching the ...
We study a driven-dissipative system of atoms in the presence of laser excitation to a Rydberg state...
Ultracold atomic gases excited to strongly interacting Rydberg states are a promising system for qua...
Resonant laser excitation of multiple Rydberg atoms are prohibited, leading to Rydberg blockade, whe...
Rydberg antiblockade (RAB) allows more than one Rydberg atom to be excited in the presence of Rydber...
Atoms excited to high-lying quantum states, so-called Rydberg atoms, are highly polarizable and, the...
Blockade interactions whereby a single particle prevents the flow or excitation of other particles p...
We demonstrate Rabi oscillations of small numbers of 87Rb atoms between ground and Rydberg states wi...
The dipole-dipole interaction among ultracold Rydberg atoms is simulated. We examine a general inter...
Atoms excited to high lying g quantum states, so-called Rydberg atoms, are highly polarizable and, t...
Atoms in high-lying Rydberg states strongly interact with each other via the dipole-dipole or van de...
We propose a Rydberg molecule dressing scheme to create strong and long-ranged interactions at selec...
Coupling electronic and vibrational degrees of freedom of Rydberg atoms held in optical tweezers arr...
Recent achievements in ultra-cold experiments have made quantum simulation of interacting many-body ...
In an ensemble of laser-driven atoms involving strongly interacting Rydberg states, the excitation p...
Rydberg atoms, with their giant electronic orbitals, exhibit dipole-dipole interaction reaching the ...
We study a driven-dissipative system of atoms in the presence of laser excitation to a Rydberg state...
Ultracold atomic gases excited to strongly interacting Rydberg states are a promising system for qua...
Resonant laser excitation of multiple Rydberg atoms are prohibited, leading to Rydberg blockade, whe...
Rydberg antiblockade (RAB) allows more than one Rydberg atom to be excited in the presence of Rydber...
Atoms excited to high-lying quantum states, so-called Rydberg atoms, are highly polarizable and, the...
Blockade interactions whereby a single particle prevents the flow or excitation of other particles p...
We demonstrate Rabi oscillations of small numbers of 87Rb atoms between ground and Rydberg states wi...
The dipole-dipole interaction among ultracold Rydberg atoms is simulated. We examine a general inter...
Atoms excited to high lying g quantum states, so-called Rydberg atoms, are highly polarizable and, t...
Atoms in high-lying Rydberg states strongly interact with each other via the dipole-dipole or van de...
We propose a Rydberg molecule dressing scheme to create strong and long-ranged interactions at selec...
Coupling electronic and vibrational degrees of freedom of Rydberg atoms held in optical tweezers arr...
Recent achievements in ultra-cold experiments have made quantum simulation of interacting many-body ...
In an ensemble of laser-driven atoms involving strongly interacting Rydberg states, the excitation p...
Rydberg atoms, with their giant electronic orbitals, exhibit dipole-dipole interaction reaching the ...
We study a driven-dissipative system of atoms in the presence of laser excitation to a Rydberg state...
Ultracold atomic gases excited to strongly interacting Rydberg states are a promising system for qua...