Recent developments in the study of ultracold Rydberg gases demand an advanced level of experimental sophistication, in which high atomic and optical densities must be combined with excellent control of external fields and sensitive Rydberg atom detection. We describe a tailored experimental system used to produce and study Rydberg-interacting atoms excited from dense ultracold atomic gases. The experiment has been optimized for fast duty cycles using a high flux cold atom source and a three beam optical dipole trap. The latter enables tuning of the atomic density and temperature over several orders of magnitude, all the way to the Bose-Einstein condensation transition. An electrode structure surrounding the atoms allows for precise control...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
Ultracold highly excited atoms in a magneto-optical trap (MOT) are strongly coupled by the dipole-di...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
Recent developments in the study of ultracold Rydberg gases demand an advanced level of experimental...
This thesis experimentally explores the application of strongly interacting states of Rydberg atoms ...
Abstract. This article presents recent experiments where cold atoms excited to Rydberg states intera...
Interfacing light and matter at the quantum level is at the heart of modern atomic and optical physi...
Collisions involving Rydberg atoms reveal detailed information on the state of a background medium a...
Interacting Rydberg excitations in cold atomic ensembles can exhibit large quantum nonlinearities th...
Collisions involving Rydberg atoms reveal detailed information on the state of a background medium a...
Interfacing light and matter at the quantum level is at the heart of modern atomic and optical physi...
Very-high-n (n~300) Rydberg atoms serve as a powerful tool to study chaos and quantum optical phenom...
Very-high-n (n~300) Rydberg atoms serve as a powerful tool to study chaos and quantum optical phenom...
This thesis investigates new phenomena that arise when light is strongly coupled to an interacting a...
Highly excited Rydberg states, neutral atomic states with one or more electrons promoted to states o...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
Ultracold highly excited atoms in a magneto-optical trap (MOT) are strongly coupled by the dipole-di...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
Recent developments in the study of ultracold Rydberg gases demand an advanced level of experimental...
This thesis experimentally explores the application of strongly interacting states of Rydberg atoms ...
Abstract. This article presents recent experiments where cold atoms excited to Rydberg states intera...
Interfacing light and matter at the quantum level is at the heart of modern atomic and optical physi...
Collisions involving Rydberg atoms reveal detailed information on the state of a background medium a...
Interacting Rydberg excitations in cold atomic ensembles can exhibit large quantum nonlinearities th...
Collisions involving Rydberg atoms reveal detailed information on the state of a background medium a...
Interfacing light and matter at the quantum level is at the heart of modern atomic and optical physi...
Very-high-n (n~300) Rydberg atoms serve as a powerful tool to study chaos and quantum optical phenom...
Very-high-n (n~300) Rydberg atoms serve as a powerful tool to study chaos and quantum optical phenom...
This thesis investigates new phenomena that arise when light is strongly coupled to an interacting a...
Highly excited Rydberg states, neutral atomic states with one or more electrons promoted to states o...
International audienceThe control of strongly interacting many-body systems enables the creation of ...
Ultracold highly excited atoms in a magneto-optical trap (MOT) are strongly coupled by the dipole-di...
International audienceThe control of strongly interacting many-body systems enables the creation of ...