Controlling High-Speed Instabilities in Semiconductor Lasers

Controlling High-Speed Instabilities in Semiconductor Lasers
Author: Daniel Gauthier
Publisher:
Total Pages: 10
Release: 1998
Genre:
ISBN:

We developed and characterized external-cavity semiconductor lasers as paradigms for complexity in optical systems. We measured precisely the properties of these lasers to elucidate the origin of low-dimensional chaotic behavior that occurs in these devices and developed models that accurately reflect the observed dynamics. Based on our findings, we developed and characterized high-speed techniques for controlling and synchronizing the laser dynamics.

LEOS '93 Conference Proceedings

LEOS '93 Conference Proceedings
Author: IEEE Lasers and Electro-Optics Society
Publisher: Institute of Electrical & Electronics Engineers(IEEE)
Total Pages: 866
Release: 1993
Genre: Electrooptics
ISBN:

Semiconductor Lasers

Semiconductor Lasers
Author: Junji Ohtsubo
Publisher: Springer
Total Pages: 679
Release: 2017-05-03
Genre: Science
ISBN: 3319561383

This book describes the fascinating recent advances made concerning the chaos, stability and instability of semiconductor lasers, and discusses their applications and future prospects in detail. It emphasizes the dynamics in semiconductor lasers by optical and electronic feedback, optical injection, and injection current modulation. Applications of semiconductor laser chaos, control and noise, and semiconductor lasers are also demonstrated. Semiconductor lasers with new structures, such as vertical-cavity surface-emitting lasers and broad-area semiconductor lasers, are intriguing and promising devices. Current topics include fast physical number generation using chaotic semiconductor lasers for secure communication, development of chaos, quantum-dot semiconductor lasers and quantum-cascade semiconductor lasers, and vertical-cavity surface-emitting lasers. This fourth edition has been significantly expanded to reflect the latest developments. The fundamental theory of laser chaos and the chaotic dynamics in semiconductor lasers are discussed, but also for example the method of self-mixing interferometry in quantum-cascade lasers, which is indispensable in practical applications. Further, this edition covers chaos synchronization between two lasers and the application to secure optical communications. Another new topic is the consistency and synchronization property of many coupled semiconductor lasers in connection with the analogy of the dynamics between synaptic neurons and chaotic semiconductor lasers, which are compatible nonlinear dynamic elements. In particular, zero-lag synchronization between distant neurons plays a crucial role for information processing in the brain. Lastly, the book presents an application of the consistency and synchronization property in chaotic semiconductor lasers, namely a type of neuro-inspired information processing referred to as reservoir computing.