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- W4378448082 abstract "In this paper, the result of mid-infrared ZGP-OPO nonlinear conversion from a Q-switched Ho:YLF laser at 2.056 μm wavelength was investigated. First, the linear OPO resonator was analyzed using simulation process. To improve the output result of the ZGP-OPO structure, two models of cavity resonance were used with a double-resonance oscillator (DRO) and double-resonance pump enhancement oscillator (PE-DRO) performances. By changing the physical length of the linear Plano-Plano resonator, the optimum output energy and far field profile of the beam were recorded in the SNLO simulation. Subsequently, 21.5 mJ total energy of 3–5 μm wavelength corresponding to 53.5 % optical-to-optical efficiency was measured in experiment approach of the PE-DRO resonance regimes. At maximum output energy, the peak power of OPO waves was 0.96 MW. The experimental OPO performance of mentioned regimes confirms SNLO simulation results. The central wavelength of the signal and idler wave’s envelope were measured at 3779.5 and 4507.6 nm, and they were extracted by tuning the ZGP crystal angle." @default.
- W4378448082 created "2023-05-27" @default.
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- W4378448082 date "2023-10-01" @default.
- W4378448082 modified "2023-09-25" @default.
- W4378448082 title "Investigation of experimental setup and simulation results of 3–5 μm mid-infrared ZnGeP2 OPO pumped by Q-switched Ho:YLF laser" @default.
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- W4378448082 doi "https://doi.org/10.1016/j.optlastec.2023.109607" @default.
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