Microchip and ultra-fast laser inscribed waveguide lasers in Yb3+germanate glass

We report the first Yb3+-doped germanate waveguide laser fabricated using femtosecond direct writing. Positive refractive-index channels were inscribed in Yb3+ doped high refractive-index (1.85) GPGN glass with molar composition 54.5GeO2-31PbO-4Ga2O3-9Na2O-1.5Yb2O3, resulting in 13 mm long waveguide...

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Veröffentlicht in:Optical materials express 2019-08, Vol.9 (8), p.3557
Hauptverfasser: Khalid, M, Chen, G Y, Bei, J, Ebendorff-Heidepriem, H, Lancaster, D G
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Sprache:eng
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Zusammenfassung:We report the first Yb3+-doped germanate waveguide laser fabricated using femtosecond direct writing. Positive refractive-index channels were inscribed in Yb3+ doped high refractive-index (1.85) GPGN glass with molar composition 54.5GeO2-31PbO-4Ga2O3-9Na2O-1.5Yb2O3, resulting in 13 mm long waveguides with a refractive-index change of ∼9×10−4. The laser performance is investigated in the unguided microchip and in the waveguide configuration. A maximum output power of ∼51 mW at 1.052 µm with a slope efficiency of ∼30% and a lasing threshold of 100 mW was achieved from the Yb3+: GPGN microchip laser with a 4.5 mm gain length. A maximum output of ∼15 mW at 1.069 µm with a low lasing-threshold of 83 mW was achieved from the un-optimized 24 µm core-diameter, 13 mm long Yb3+: GPGN waveguide laser.
ISSN:2159-3930
DOI:10.1364/OME.9.003557