English

Rydberg-induced optical nonlinearities from a cold atomic ensemble trapped inside a cavity

Quantum Physics 2019-06-14 v2 Quantum Gases Atomic Physics

Abstract

We experimentally characterize the optical nonlinear response of a cold atomic medium placed inside an optical cavity, and excited to Rydberg states. The excitation to S and D Rydberg levels is carried out via a two-photon transition in an EIT (electromagnetically induced transparency) configuration, with a weak (red) probe beam on the lower transition, and a strong (blue) coupling beam on the upper transition. The observed optical nonlinearities induced by S states for the probe beam can be explained using a semi-classical model with van der Waals' interactions. For the D states, it appears necessary to take into account a dynamical decay of Rydberg excitations into a long-lived dark state. We show that the measured nonlinearities can be explained by using a Rydberg bubble model with a dynamical decay.

Keywords

Cite

@article{arxiv.1512.08480,
  title  = {Rydberg-induced optical nonlinearities from a cold atomic ensemble trapped inside a cavity},
  author = {Rajiv Boddeda and Imam Usmani and Erwan Bimbard and Andrey Grankin and Alexei Ourjoumtsev and Etienne Brion and Philippe Grangier},
  journal= {arXiv preprint arXiv:1512.08480},
  year   = {2019}
}

Comments

8 pages, 6 figures

R2 v1 2026-06-22T12:19:04.071Z