| Literature DB >> 35661142 |
N Boutabba1, S Grira2, H Eleuch3,4.
Abstract
A fast laser pulse with a q-deformed hyperbolic function shape is investigated in a Multi-level atomic system. Therefore, we first derive the exact solution of the Bloch equations describing a two-level atom excited by a q-deformed laser pulse with dephasing and time-dependent detuning. Next, we analyze the dynamic of the atomic population inversion at resonance and off-resonance of a Rubidium 87 three-level atom driven by a classical weak field and a strong q-deformed control laser. Finally, in order to get a deeper insight of the probe field's absorption and dispersion properties, we investigate the coherence's dependence on the q-deformation. Our work demonstrates that, the dynamic of the atomic system can be fully controlled through the manipulation of the asymmetry scaling parameter q of the q-deformed hyperbolic laser wave-form.Entities:
Year: 2022 PMID: 35661142 PMCID: PMC9166771 DOI: 10.1038/s41598-022-13407-7
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.996
Figure 1(a) A two-level atom excited by a strong field with Rabi-frequency , (b) The q-deformed laser shape for various q-deformations.
Figure 2(a) A three-level atom excited by a q-deformed control laser and a weak probe field, (b) The temporal dynamics of the atomic population inversion for various detunings.
Figure 3in a three level configuration controlled by various q-deformed waveforms: the atomic population inversion and the coherence in terms of time t scaled to the pulse rise time.
Figure 4The real and the imaginary part of the coherence off-resonance and for various deformations.