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Extending mid-infrared wavelength to 6.84 μm in oxide nonlinear optical crystal via birefringence dispersion management.

作者信息

Gu Hongxu, Lu Dazhi, Cui Chen, Liang Fei, Wu Kui, Yu Haohai, Zhang Huaijin

出版信息

Opt Lett. 2024 Oct 1;49(19):5643-5646. doi: 10.1364/OL.535134.

Abstract

Extending lasing wavelengths to the mid-infrared (MIR) spectrum is vital for both civilian and military applications; however, it remains challenging when employing oxide nonlinear optical crystals. In this study, we report the generation of MIR nanosecond pulses via difference frequency generation (DFG) with a near-IR pump using a newly designed langasite (LGS) crystal, La(NbTa)GaO (LGNT), which incorporates birefringence dispersion management techniques with LaGaNbO (LGN) as a template. Due to the improved effective nonlinear coefficients and the maintained IR cutoff relative to LGN, the tunable DFG laser in LGNT extended from 4.24 to 6.84 μm, delivering a maximum pulse energy of 16.3 μJ at 5.02 μm. To the best of our knowledge, this is the first known oxide material capable of generating tunable nanosecond pulsed lasers beyond 6 μm at μJ-level energies, demonstrating promising potential for high-intensity MIR laser systems owing to its high laser damage threshold.

摘要

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