Tunable Optical Parametric Oscillator Based on MgO:PPLN and HgGa2S4 Crystals Pumped by an Nd:YAG Laser with Increased Energy Characteristics

We report the development of a combined optical parametric oscillator based on a fan-out MgO:PPLN crystal and a HgGa 2 S 4 crystal, providing smooth wavelength tuning in the spectral range from 2.5 to 10.8 μm. A transversely pumped Nd:YAG laser with a pulse energy of ∼4 mJ and a spatial beam distrib...

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Veröffentlicht in:Bulletin of the Lebedev Physics Institute 2024-04, Vol.51 (Suppl 1), p.S39-S50
Hauptverfasser: Erushin, E. Yu, Yakovin, M. D., Latkin, N. I., Podzyvalov, S. N., Kostyukova, N. Yu, Boyko, A. A.
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Sprache:eng
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Zusammenfassung:We report the development of a combined optical parametric oscillator based on a fan-out MgO:PPLN crystal and a HgGa 2 S 4 crystal, providing smooth wavelength tuning in the spectral range from 2.5 to 10.8 μm. A transversely pumped Nd:YAG laser with a pulse energy of ∼4 mJ and a spatial beam distribution described by a second-order Gaussian function along the x axis and a fourth-order Gaussian function along the y axis is used as a pump source. A maximum achievable radiation energy of the optical parametric oscillator is at a level of 360 μJ for a wavelength of 3.3 μm, 130 μJ for a wavelength of 4.73 μm, and 110 μJ for a wavelength of 7.40 μm. The developed radiation source is used to record absorption spectra of gas mixtures of methane, propane and nitrogen dioxide.
ISSN:1068-3356
1934-838X
DOI:10.3103/S1068335624600190