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DOE OSTI · 3001864

Improved high-resolution mapping of phase-matching conditions in second-order nonlinear crystals via imaging

Abstract

Large-aperture nonlinear crystals for frequency conversion and parametric amplification exhibit spatial variations in phase-matching conditions, which affect the performance of high-power laser systems. We demonstrate significant improvements in speed and resolution to a technique that spatially maps these phase-matching conditions using imaging of the beam resulting from detuned second-harmonic generation. The phase-matching conditions at the pyramidal sector boundary of partially deuterated potassium dihydrogen phosphate (DKDP) are mapped with sub-0.1-mm resolution. We examine the effect of further increases in scan rate on the precision of the technique and demonstrate a scan rate of 0.8 cm 2 per minute at the aforementioned resolution.

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BibTeXRIS

Wampler, R. [Univ. of Rochester, NY (United States). Lab. for Laser Energetics] (ORCID:0009000373301162), Dorrer, C. [Univ. of Rochester, NY (United States). Lab. for Laser Energetics] (ORCID:0000000253745394). 2025-10-09. Improved high-resolution mapping of phase-matching conditions in second-order nonlinear crystals via imaging. https://doi.org/10.1364/ome.570316

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