paper

Coherent control of optical four-wave mixing by two-color - ultrashort laser pulses

arXiv:physics/0410192 · doi:10.1103/PhysRevA.72.023808

Abstract

A theoretical investigation on the quantum control of optical coherent four-wave mixing interactions in two-level systems driven by two intense synchronized femtosecond laser pulses of central angular frequencies and is reported. By numerically solving the full Maxwell-Bloch equations beyond the slowly-varying envelope and rotating-wave approximations in the time domain, the nonlinear coupling to the optical field at frequency is found to depend critically on the initial relative phase of the two propagating pulses; the coupling is enhanced when the pulses interfere constructively in the center (), while it is nearly suppressed when they are out of phase (). The tuning of the initial absolute phase of the different frequency components of synchronously propapagating - femtosecond pulses can serve as a means to control coherent anti-Stokes Raman scattering (CARS) processes.

4 pages, 6 figures