Abstract

Abstract The time-dependent (physical) spectrum of stimulated Raman scattering (SRS) from a two-level system is calculated, proving the influence of the spectral width Γ of the detector on the obtained spectral line shape. In addition, the time evolution of the process leading to the Raman line is investigated. For a partially excited system, the scattered field intensity exhibits oscillations in time, and Γ is found to affect the amplitude of the oscillations in the Raman line intensity. A numerical analysis of the result is performed for the case of monochromatic external fields.

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