We report the observation of subradiance in dense ensembles of cold 87Rb atoms operating near Dicke’s regime of a large number of atoms in a volume with dimensions smaller than the transition wavelength. We validate that the atom number is the only cooperativity parameter governing subradiance. We probe the dynamics in the many-body regime and support the picture that multiply excited subradiant states are built as a superposition of singly excited states that decay independently. Moreover, we implement an experimental procedure to release the excitation stored in the long-lived modes in a pulse of light. This technique is a first step towards the realization of tailored light storing based on subradiance.
Storage and Release of Subradiant Excitations in a Dense Atomic Cloud / FERIOLI G; Antoine Glicenstein; Loic Henriet; Igor Ferrier-Barbut; Antoine Browaeys. - In: PHYSICAL REVIEW. X. - ISSN 2160-3308. - 11:(2021). [https://doi.org/10.1103/PhysRevX.11.021031]
Storage and Release of Subradiant Excitations in a Dense Atomic Cloud
FERIOLI G;
2021
Abstract
We report the observation of subradiance in dense ensembles of cold 87Rb atoms operating near Dicke’s regime of a large number of atoms in a volume with dimensions smaller than the transition wavelength. We validate that the atom number is the only cooperativity parameter governing subradiance. We probe the dynamics in the many-body regime and support the picture that multiply excited subradiant states are built as a superposition of singly excited states that decay independently. Moreover, we implement an experimental procedure to release the excitation stored in the long-lived modes in a pulse of light. This technique is a first step towards the realization of tailored light storing based on subradiance.| File | Dimensione | Formato | |
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