70 MW-level picosecond mid-infrared radiation generation by difference frequency generation in AgGaS2, BaGa4Se7, LiGaSe2, and LiGaS2

Abstract

Comparative study of nonlinear crystals for picosecond difference frequency generation in mid-IR is presented. Nonlinear crystals of AgGaS2, BaGa4Se7, LiGaSe2, and LiGaS2 were studied. Samples of AgGaS2, BaGa4Se7, LiGaSe2, and LiGaS2 were tested in thee sets having lengths of 2, 4, or 8 mm. In order to investigate the dependence of efficiency on the crystal length, three sets of crystals with lengths of 2, 4, or 8 mm were tested. The developed tunable DFG system was driven by the 1.03 μm, 1.8 ps, Yb:YAG thin-disk laser system operated at the repetition rate of 10 or 100 Hz. As the best result, picosecond mid-IR pulses at a wavelength of 7 μm with the energy up to 130 μJ corresponding to the peak power of 72 MW were generated using the 8 mm long LiGaS2 crystal. Using the BaGa4Se7 crystal, DFG tunability in the wavelength range from 6 up to 13 μm was achieved.

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