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Temporal build-up of electromagnetically induced transparency and absorption resonances in degenerate two-level transitions

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arxiv quant-ph/0209011 v1 pith:I3NEUQ4T submitted 2002-09-02 quant-ph

Temporal build-up of electromagnetically induced transparency and absorption resonances in degenerate two-level transitions

classification quant-ph
keywords absorptionatomicresonancestimedegeneratedependentelectromagneticallyevolution
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The temporal evolution of electromagnetically induced transparency (EIT) and absorption (EIA) coherence resonances in pump-probe spectroscopy of degenerate two-level atomic transition is studied for light intensities below saturation. Analytical expression for the transient absorption spectra are given for simple model systems and a model for the calculation of the time dependent response of realistic atomic transitions, where the Zeeman degeneracy is fully accounted for, is presented. EIT and EIA resonances have a similar (opposite sign) time dependent lineshape, however, the EIA evolution is slower and thus narrower lines are observed for long interaction time. Qualitative agreement with the theoretical predictions is obtained for the transient probe absorption on the $^{85}Rb$ $D_{2}$ line in an atomic beam experiment.

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