Abstract:
We report efficient cascade up-conversion generation due to two simultaneous quasi-synchronous processes of parametric decay ω3→ω1+ ω2 of pump quanta at the frequency ω3 and up-conversion of one of the generated waves ω1+ω3→ω4>ω3 at the frequency ω1 in a medium with a quadratic nonlinearity. It is found that the necessary condition for this generation is the requirement |γ1|2>(ω2/ω1)|γ2|2, where γ1,2 are the averaged constants of the nonlinear coupling for the processes ω1+ω2,3→ω3,4, respectively. If this requirement is fulfilled, the plane monochromatic pump wave is completely depleted, while the limiting (the noise seed intensity is I10,20→0 at the input) efficiency of the energy conversion into radiation at the frequency ω4 is independent of I10,20 and determined only by the relations between |γ1,2|2 and the frequencies of the interacting waves.