Electromagnetically induced transparency in a V-system with Rb vapor in the hyperfine Paschen-Back regime
arXiv:2104.10613 · doi:10.1088/1361-6455/ac20be
Abstract
We observe EIT in a V-system in a thermal rubidium-87 vapour in the hyperfine Paschen-Back regime, realised with a 0.6 T axial magnetic field. In this regime energy levels are no longer degenerate and EIT features from different initial states are distinct, which we show produces a much cleaner feature than without a magnetic field. We compare our results to a model using the time-dependent Lindblad master equation, and having averaged over a distribution of interaction times, see good qualitative agreement for a range of pump Rabi frequencies. Excited state decay into both ground states is shown to play a prominent role in the generation of the transparency feature, which arises mainly due to transfer of population into the ground state not coupled by the probe beam. We use the model to investigate the importance of coherence in this feature, showing that its contribution is more significant at smaller pump Rabi frequencies.
8 pages, 8 figures
References in corpus (2)
Cited by in corpus (5)
- Electromagnetically Induced Transparency and Optical Pumping in the Hyperfine Paschen-Back Regime
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- Quantum Interference in Atomic Systems
- Self-induced transparency and optical transients in atomic vapors