English

Slow light propagation and amplification via electromagnetically induced transparency and four-wave mixing in an optically dense atomic vapor

Quantum Physics 2012-05-15 v2

Abstract

We experimentally and theoretically analyze the propagation of weak signal field pulses under the conditions of electromagnetically induced transparency (EIT) in hot Rb vapor, and study the effects of resonant four-wave mixing (FWM). In particular, we demonstrate that in a double-Λ\Lambda system, formed by the strong control field with the weak resonant signal and a far-detuned Stokes field, both continuous-wave spectra and pulse propagation dynamics for the signal field depend strongly on the amplitude of the seeded Stokes field, and the effect is enhanced in optically dense atomic medium. We also show that the theory describing the coupled propagation of the signal and Stokes fields is in good agreement with the experimental observations.

Keywords

Cite

@article{arxiv.0903.3937,
  title  = {Slow light propagation and amplification via electromagnetically induced transparency and four-wave mixing in an optically dense atomic vapor},
  author = {N. B. Phillips and A. V. Gorshkov and I. Novikova},
  journal= {arXiv preprint arXiv:0903.3937},
  year   = {2012}
}

Comments

7 pages, 5 figures, Conference Proceedings from PQE-2009. Uploaded new figure4