Broadband sum-frequency conversion of multiline Q-switched CO laser emission under its double-pass through AR-coated ZnGeP2 crystal

Broadband sum-frequency conversion of multiline (~ 60 spectral lines within ~ 5–6 μm wavelength interval) Q-switched CO laser emission in an AR-coated ZnGeP 2 crystal was experimentally studied by application of both single-pass and double-pass optical schemes. The maximum conversion efficiency in t...

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Veröffentlicht in:Optical and quantum electronics 2024-03, Vol.56 (3), Article 468
Hauptverfasser: Kinyaevskiy, I. O., Klimachev, Yu. M., Ionin, M. V., Sagitova, A. M., Zinovev, M. M., Yudin, N. N., Ionin, A. A.
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Sprache:eng
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Zusammenfassung:Broadband sum-frequency conversion of multiline (~ 60 spectral lines within ~ 5–6 μm wavelength interval) Q-switched CO laser emission in an AR-coated ZnGeP 2 crystal was experimentally studied by application of both single-pass and double-pass optical schemes. The maximum conversion efficiency in the double-pass scheme reached ~ 10% that is 2.5 times higher than one obtained in the same optical scheme with an uncoated ZnGeP 2 . The spectrum control of frequency converted radiation by changing angles of incident and reversed CO laser beams in the ZnGeP 2 crystal was implemented within the wavelength range from 2.52 μm up to 2.92 μm. The maximum spectrum width of 0.35 μm was obtained with the double-pass scheme when the angle of the laser beam incident on the crystal and the angle of the deflected reversed laser beam were −4.0° and 1.0°, respectively, the spectral bandwidth being three times broader than one obtained with the single-pass scheme.
ISSN:0306-8919
1572-817X
DOI:10.1007/s11082-023-06112-w