English

Confining stationary light: Dirac dynamics and Klein tunneling

Quantum Physics 2009-11-13 v1

Abstract

We discuss the properties of 1D stationary pulses of light in atomic ensemble with electromagnetically induced transparency in the limit of tight spatial confinement. When the size of the wavepacket becomes comparable or smaller than the absorption length of the medium, it must be described by a two-component vector which obeys the one-dimensional two-component Dirac equation with an effective mass mm^* and effective speed of light cc^*. Then a fundamental lower limit to the spatial width in an external potential arises from Klein tunneling and is given by the effective Compton length λC=/(mc)\lambda_C = \hbar/(m^* c^*). Since cc^* and mm^* can be externally controlled and can be made small it is possible to observe effects of the relativistic dispersion for rather low energies or correspondingly on macroscopic length scales.

Keywords

Cite

@article{arxiv.0811.2116,
  title  = {Confining stationary light: Dirac dynamics and Klein tunneling},
  author = {J. Otterbach and R. G. Unanyan and M. Fleischhauer},
  journal= {arXiv preprint arXiv:0811.2116},
  year   = {2009}
}

Comments

4 pages, 4 figures

R2 v1 2026-06-21T11:41:11.252Z