Data di Pubblicazione:
2003
Abstract:
Radiation is almost completely reflected within the exciton-polariton stop band of a semiconductor, as in the typical case of CuCl. We predict, however, that a coherently driven exciton-biexciton transition allows for the propagation of a probe light beam within the stop band. The phenomenon is reminiscent of electromagnetically induced transparency effects occurring in three-level atomic systems, except that it here involves delocalized electronic excitations in a crystalline structure via a frequency and wave-vector selective polaritonic mechanism. A well-developed transparency, favored by the narrow linewidth of the biexciton, is established within the stop band where a probe pulse may propagate with significant delays. The transparency window can be controlled via the pump beam detuning and intensity.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Electromagnetically Induced Transparency; Interference; Waves; Slow Light
Elenco autori:
S., Chesi; Artoni, Maurizio; G. C., LA ROCCA; F., Bassani; A., Mysyrowicz
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