Mathematics (Mar 2021)

Driven Qubit by Train of Gaussian-Pulses

  • Rania A. Alharbey

DOI
https://doi.org/10.3390/math9060628
Journal volume & issue
Vol. 9, no. 6
p. 628

Abstract

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The simplest non-dissipative 2-level atom system, a qubit, excited by a train of resonant n-Gaussian laser pulses is investigated. This concerns examination of the averaged atomic variables, the intensity-intensity correlation function, and the transient fluorescent radiation. Analytical formulas for the above expressions are obtained. Computational results show that the transient spectra with the initial ground and coherent atomic states exhibit asymmetric Mollow structure with dip structure, dense oscillation, and narrowing, and depends on the pulse number (n), the repetition time (τR), and the observed time.

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