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Propagation of a squeezed optical field in a medium with superluminal group velocity

Optics 2014-02-17 v2 Atomic Physics Quantum Physics

Abstract

We investigated the propagation of a squeezed optical field, generated via the polarization self-rotation (PSR) effect, with a sinusoidally-modulated degree of squeezing through an atomic medium with anomalous dispersion. We observed the advancement of the signal propagating through a resonant Rb vapor compared to the reference signal, propagating in air. The measured advancement time grew linearly with atomic density, reaching a maximum of 11±1 μ11 \pm 1~\mus, which corresponded to a negative group velocity of vg7,000 v_g\approx - 7,000~m/s. We also confirmed that the increasing advancement was accompanied by a reduction of output squeezing levels due to optical losses, in good agreement with theoretical predictions.

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Cite

@article{arxiv.1310.4815,
  title  = {Propagation of a squeezed optical field in a medium with superluminal group velocity},
  author = {Gleb Romanov and Travis Horrom and Irina Novikova and Eugeniy E. Mikhailov},
  journal= {arXiv preprint arXiv:1310.4815},
  year   = {2014}
}

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4 pages