This study looks at the basic principles of optical parametric
processes and recent results on the rapidly developing optical
parametric device technology. The theoretical basis of stimulated
and spontaneous optical parametric processes and detailed design
considerations of optical parametric oscillators and amplifiers are
discussed, followed by a review of the materials properties of the
most important nonlinear optical crystals for such applications. It
concludes with a review of the recent developments on practical
low-repetition rate nanosecond optical parametric oscillators and
broadly tunable high-repetition rate continuous-pulse-train
femtosecond optical parametric oscillations from the uv to the mid
ir.
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