4.5 Article Proceedings Paper

On-Demand Q-Switching Regime in Optically Injected Dual-Section Quantum-Dot Laser

期刊

IEEE PHOTONICS JOURNAL
卷 14, 期 3, 页码 -

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JPHOT.2022.3171087

关键词

Semiconductor lasers; Laser mode locking; Optical pulses; Optical switches; Laser tuning; Optical fibers; Stimulated emission; Laser mode locking; laser tuning; optical tuning; quantum dot lasers; semiconductor lasers; ultrafast optics

资金

  1. European Research Council under the European Union [640537]
  2. European Research Council (ERC) [640537] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

Pure Q-switching behavior is demonstrated for the first time in an optically injected two-section quantum-dot laser. The operation regime can be switched from free-running mode-locking to locked Q-switching with optical injection. The pulse repetition rate can be tuned by adjusting the injection power and absorber reverse bias, while the Q-switched output can be spectrally tunable by tuning the master laser.
Pure Q-switching (self-pulsating) behaviour is shown for the first time in an optically injected two-section quantum-dot laser. Upon CW optical injection, it was possible to switch the operation regime from free-running mode-locking to locked Q-switching. Under this regime, the pulse repetition rate of around 1 GHz was tunable with injection power (by more than 100 MHz) and absorber reverse bias. Moreover, through injection-locking, the Q-switched output was spectrally tunable by around 7 nm, by tuning the master laser. The seamless switch between mode-locking and Q-switching with optical injection as well as the tunability and control afforded by injection-locking could open up a range of applications, such as in multi-modal imaging. On a more fundamental level, this investigation has also generated new insights into the dynamics of quantum-dot lasers and the optical injection process.

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