All-optical measurement of Rydberg state lifetimes

Abstract

We have developed an all-optical method for measuring the lifetimes of n S and n D Rydberg states and demonstrate its capabilities with measurements on a dilute cloud of ultracold 87Rb atoms in a cryogenic environment. The method is based on the time-resolved observation of resonant light absorption by ground state atoms and selective transfer of Rydberg atoms into the ground state at varying delay times in order to reconstruct Rydberg decay curves. Our measurements of the 87Rb 30S1/2 state indicate an increase of the lifetime at lowered environment temperatures, as expected due to decreased black body radiation. For the 38D5/2 state with an attractive dipole-dipole interaction, ionization and lifetime reduction due to collisional effects are observed.

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