Ring-Resonator Based Widely-Tunable Narrow-Linewidth Si/InP Integrated Lasers

Minh A. Tran, Duanni Huang, Joel Guo, Tin Komljenović, Paul A. Morton, John E. Bowers

IEEE Journal of Selected Topics in Quantum Electronics · 2019 · 162 citations · 42 references

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Abstract

This paper presents recent results on widely-tunable narrow-linewidth semiconductor lasers using a ring-resonator based mirror as the extended cavity. Two generations of lasers on the heterogeneous Si/InP photonic platform are presented. The first-generation lasers, with a total footprint smaller than 0.81 mm <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sup> , showed an intrinsic linewidth of ~2 kHz over a 40 nm wavelength tuning range across C+L bands. The second-generation lasers using ultra-low loss silicon waveguides and a novel cavity design achieved an intrinsic linewidth below 220 Hz. The lasers also possess an ultrawide wavelength tuning range of 110 nm across three optical communication bands (S+C+L). These are records among all fully integrated semiconductor lasers reported in the literature.

References

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