Fast tuneable InGaAsP DBR laser using quantum-confined Stark-effect-induced refractive index change

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Abstract

We report a monolithically integrated InGaAsP DBR ridge waveguide laser that uses the quantum-confined Stark effect (QCSE) to achieve fast tuning response. The laser incorporates three sections: a forward-biased gain section, a reverse-biased phase section, and a reverse-biased DBR tuning section. The laser behavior is modeled using transmission matrix equations and tuning over ∼8 nm is predicted. Devices were fabricated using post-growth shallow ion implantation to reduce the loss in the phase and DBR sections by quantum well intermixing. The lasing wavelength was measured while varying the reverse bias of the phase and DBR sections in the range 0 V to

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Pantouvaki, M., Renaud, C. C., Cannard, P., Robertson, M. J., Gwilliam, R., & Seeds, A. J. (2007). Fast tuneable InGaAsP DBR laser using quantum-confined Stark-effect-induced refractive index change. In IEEE Journal on Selected Topics in Quantum Electronics (Vol. 13, pp. 1112–1121). https://doi.org/10.1109/JSTQE.2007.906046

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