The dipole-dipole interaction between two Rydberg atoms depends on the relative orientation of the atoms and on the change in the magnetic quantum number. We simulate the effect of this anisotropy on the energy transport in an amorphous many atom system subject to a homogeneous applied electric field. We consider two experimentally feasible geometries and find that the effects should be measurable in current generation imaging experiments. In both geometries atoms of p character are localized to a small region of space which is immersed in a larger region that is filled with atoms of s character. Energy transfer due to the dipole-dipole interaction can lead to a spread of p character into the region initially occupied by s atoms. Over long ...
Ultracold Rydberg atoms serve as good systems in which resonant dipole-dipole interactions can be ob...
We study coherent excitation hopping in a spin chain realized using highly excited individually addr...
International audienceWe measure the angular dependence of the resonant dipole-dipole interaction be...
Atoms in an ultracold highly excited sample are strongly coupled through the dipole-dipole interacti...
The long-range, anisotropic nature of the interaction among atoms in an ultracold dipolar gas leads ...
The long-range, anisotropic nature of the interaction among atoms in an ultracold dipolar gas leads ...
The dipole-dipole interaction among ultracold Rydberg atoms is simulated. We examine a general inter...
Rydberg atoms, which have a highly excited outer electron, are easily manipulated by electric fields...
We explore dipole-dipole interactions between cold 87Rb Rydberg atoms, their utility for quantum com...
The dipole-dipole interaction strongly couples ultracold highly excited atoms, known as Rydberg atom...
Ultracold highly excited atoms in a magneto-optical trap (MOT) are strongly coupled by the dipole-di...
We have observed resonant energy transfer between cold Rydberg atoms in spatially separated cylinder...
The strong interactions between Rydberg excitations can result in spatial correlations between the e...
Ultracold highly excited atoms in a magneto-optical trap (MOT) are strongly coupled by the dipole-di...
We demonstrate that through localised Rydberg excitation in a three-dimensional cold atom cloud atom...
Ultracold Rydberg atoms serve as good systems in which resonant dipole-dipole interactions can be ob...
We study coherent excitation hopping in a spin chain realized using highly excited individually addr...
International audienceWe measure the angular dependence of the resonant dipole-dipole interaction be...
Atoms in an ultracold highly excited sample are strongly coupled through the dipole-dipole interacti...
The long-range, anisotropic nature of the interaction among atoms in an ultracold dipolar gas leads ...
The long-range, anisotropic nature of the interaction among atoms in an ultracold dipolar gas leads ...
The dipole-dipole interaction among ultracold Rydberg atoms is simulated. We examine a general inter...
Rydberg atoms, which have a highly excited outer electron, are easily manipulated by electric fields...
We explore dipole-dipole interactions between cold 87Rb Rydberg atoms, their utility for quantum com...
The dipole-dipole interaction strongly couples ultracold highly excited atoms, known as Rydberg atom...
Ultracold highly excited atoms in a magneto-optical trap (MOT) are strongly coupled by the dipole-di...
We have observed resonant energy transfer between cold Rydberg atoms in spatially separated cylinder...
The strong interactions between Rydberg excitations can result in spatial correlations between the e...
Ultracold highly excited atoms in a magneto-optical trap (MOT) are strongly coupled by the dipole-di...
We demonstrate that through localised Rydberg excitation in a three-dimensional cold atom cloud atom...
Ultracold Rydberg atoms serve as good systems in which resonant dipole-dipole interactions can be ob...
We study coherent excitation hopping in a spin chain realized using highly excited individually addr...
International audienceWe measure the angular dependence of the resonant dipole-dipole interaction be...