Microwaves Probe Dipole Blockade and van der Waals Forces in a Cold Rydberg Gas

Teixeira, R. Celistrino; Hermann-Avigliano, C.; Nguyen, T. L.; Cantat-Moltrecht, T.; Raimond, J. M.; Haroche, S.; Gleyzes, S.; Brune, M.

Abstract

We show that microwave spectroscopy of a dense Rydberg gas trapped on a superconducting atom chip in the dipole blockade regime reveals directly the dipole-dipole many-body interaction energy spectrum. We use this method to investigate the expansion of the Rydberg cloud under the effect of repulsive van der Waals forces and the breakdown of the frozen gas approximation. This study opens a promising route for quantum simulation of many-body systems and quantum information transport in chains of strongly interacting Rydberg atoms.

Más información

Título según WOS: ID WOS:000357095400003 Not found in local WOS DB
Título de la Revista: PHYSICAL REVIEW LETTERS
Volumen: 115
Número: 1
Editorial: AMER PHYSICAL SOC
Fecha de publicación: 2015
DOI:

10.1103/PhysRevLett.115.013001

Notas: ISI