Heterogeneous tunable III-V-on-silicon-nitride mode-locked laser emitting wide optical spectra

Author:

Billet Maximilien1ORCID,Cuyvers Stijn1ORCID,Poelman Stijn1,Hermans Artur1ORCID,Seema Saseendra Sandeep1,Nakamura Tasuku2,Okamoto Shinya2,Inada Yasuhisa2,Hisada Kazuya2,Hirasawa Taku2,Ramirez Joan3,Néel Delphine3,Vaissière Nicolas3,Decobert Jean3,Soussan Philippe1,Rottenberg Xavier1,Roelkens Gunther1,Kjellman Jon Ø.1,Kuyken Bart1

Affiliation:

1. imec

2. Panasonic Holdings Corporation

3. III-V Lab

Abstract

We demonstrate a III-V-on-silicon-nitride mode-locked laser through the heterogeneous integration of a semiconductor optical amplifier on a passive silicon-nitride cavity using the technique of micro-transfer printing. In the initial phase of our study, we focus on optimizing the lasing wavelength to be centered at 1550 nm. This optimization is achieved by conducting experiments with 27 mode-locked lasers, each incorporating optical amplifiers featuring distinct multiple-quantum-well photoluminescence values. Subsequently we present a comprehensive study investigating the behavior of the mode-locking regime when the electrical driving parameters are varied. Specifically, we explore the impact of the gain voltage and saturable absorber current on the locking stability of a tunable mode-locked laser. By manipulating these parameters, we demonstrate the precise control of the optical spectrum across a wide range of wavelengths spanning from 1530 to 1580 nm. Furthermore, we implement an optimization approach based on a Monte Carlo analysis aimed at enhancing the mode overlap within the gain region. This adjustment enables the achievement of a laser emitting a 23-nm-wide spectrum while maintaining a defined 10 dB bandwidth for a pulse repetition rate of 3 GHz.

Funder

European Research Council

Publisher

Optica Publishing Group

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