Bruno L. Segat Frare,1 Dawson B. Bonneville,1 Hamidu M. Mbonde,1 Pooya Torab Ahmadi,1 Batoul Hashemi,1 Henry C. Frankis,1 Peter Mascher,1 Jonathan D. B. Bradley1
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We demonstrate integrated distributed Bragg reflector lasers on a hybrid platform composed of silicon nitride waveguides coated with erbium-doped tellurium dioxide. The asymmetrical laser cavities are enclosed by gratings patterned on the 2.2-cm-long waveguide walls. Cavities with varying grating strengths are studied, yielding laser efficiencies up to 0.36%, a minimum lasing threshold of 13 mW, and emission wavelengths between 1530 and 1565 nm.
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Bruno L. Segat Frare, Dawson B. Bonneville, Hamidu M. Mbonde, Pooya Torab Ahmadi, Batoul Hashemi, Henry C. Frankis, Peter Mascher, Jonathan D. B. Bradley, "Erbium-doped tellurium oxide distributed Bragg reflector lasers on silicon nitride chips," Proc. SPIE 12424, Integrated Optics: Devices, Materials, and Technologies XXVII, 124240E (17 March 2023); https://doi.org/10.1117/12.2650693