A new method for visualizing energy trans-fer between highly excited atoms may pro-vide insight into coherent energy transport in molecular systems. A toms with highly excited electrons— called Rydberg atoms—have many exaggerated properties compared with ordinary ground-state atoms. For exam-ple, the loosely bound electrons create large dipoles that lead to long-range interactions between Rydberg atoms that are many orders of magnitude stronger than those between ground-state atoms. Strong interactions between Rydberg atoms can enable energ
Excited states of atoms and molecules exhibit a rich array of diverse phenomena. This dissertation e...
We have studied the development of gases of ultra-cold Rydberg atoms in Magneto Optic Traps, and dis...
The dipole-dipole interaction between two Rydberg atoms depends on the relative orientation of the a...
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 ...
Collisions involving Rydberg atoms reveal detailed information on the state of a background medium a...
The dipole-dipole interaction strongly couples ultracold highly excited atoms, known as Rydberg atom...
In this thesis, we examine the ponderomotive interaction between an applied optical field and a high...
We have observed resonant energy transfer between cold Rydberg atoms in spatially separated cylinder...
Abstract. This article presents recent experiments where cold atoms excited to Rydberg states intera...
Systems of cold, interacting Rydberg atoms are of interest because they exhibit a wide range of coll...
We investigate excitation transfer and migration processes in a cold gas of rubidium Rydberg atoms. ...
We report the creation of an interacting cold Rydberg gas of strontium atoms. We show that the excit...
Controlling the interactions between ultracold atoms is crucial for quantum simulation and computati...
Ultracold Rydberg atoms serve as good systems in which resonant dipole-dipole interactions can be ob...
Excited states of atoms and molecules exhibit a rich array of diverse phenomena. This dissertation e...
We have studied the development of gases of ultra-cold Rydberg atoms in Magneto Optic Traps, and dis...
The dipole-dipole interaction between two Rydberg atoms depends on the relative orientation of the a...
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 ...
Collisions involving Rydberg atoms reveal detailed information on the state of a background medium a...
The dipole-dipole interaction strongly couples ultracold highly excited atoms, known as Rydberg atom...
In this thesis, we examine the ponderomotive interaction between an applied optical field and a high...
We have observed resonant energy transfer between cold Rydberg atoms in spatially separated cylinder...
Abstract. This article presents recent experiments where cold atoms excited to Rydberg states intera...
Systems of cold, interacting Rydberg atoms are of interest because they exhibit a wide range of coll...
We investigate excitation transfer and migration processes in a cold gas of rubidium Rydberg atoms. ...
We report the creation of an interacting cold Rydberg gas of strontium atoms. We show that the excit...
Controlling the interactions between ultracold atoms is crucial for quantum simulation and computati...
Ultracold Rydberg atoms serve as good systems in which resonant dipole-dipole interactions can be ob...
Excited states of atoms and molecules exhibit a rich array of diverse phenomena. This dissertation e...
We have studied the development of gases of ultra-cold Rydberg atoms in Magneto Optic Traps, and dis...
The dipole-dipole interaction between two Rydberg atoms depends on the relative orientation of the a...