Reprint

Semiconductor Laser Dynamics

Fundamentals and Applications

Edited by
September 2020
244 pages
  • ISBN978-3-03943-066-6 (Hardback)
  • ISBN978-3-03943-067-3 (PDF)

This book is a reprint of the Special Issue Semiconductor Laser Dynamics: Fundamentals and Applications that was published in

Engineering
Physical Sciences
Summary
This is a collection of 18 papers, two of which are reviews and seven are invited feature papers, that together form the Photonics Special Issue “Semiconductor Laser Dynamics: Fundamentals and Applications”, published in 2020. This collection is edited by Daan Lenstra, an internationally recognized specialist in the field for 40 years.
Format
  • Hardback
License
© 2020 by the authors; CC BY-NC-ND license
Keywords
injection locking; optical filter; semiconductor laser; optical comb; semiconductor lasers; nonlinear dynamics; optical injection; chaos synchronization; intra-cavity propagation delay; secure optical communication; semiconductor lasers; quantum dot lasers; excited-state; nonlinear dynamics; optical injection; chaos; semiconductor lasers; chaotic communication; communication system security; semiconductor lasers; coupled lasers; stability; normal modes; coupled modes; optical injection locking; microwave carrier generation; hybrid photonic integration; locking range; photonic integrated circuit; microwave generation; laser dynamics; optoelectronics oscillator; semiconductor lasers; photonic integrated circuits; injection locking; mutual coupling; semiconductor ring laser; optical feedback; laser stability; parity–time symmetry; semiconductor laser; intensity dynamics; semiconductor laser; feedback; delay; reservoir computing; neuromorphic computing; two delay-coupled lasers; weak coupling limit; optically injected laser; semiconductor laser; InP semiconductor optical amplifier; hybrid integration; narrow intrinsic linewidth; dual-wavelength laser; laser frequency comb; integrated photonic circuits; low-loss Si3N4 waveguides; external-cavity diode laser; interference filter; laser diode; laser stabilization; space optical clock; high-speed VCSELs; multi-mode VCSELs; intrinsic laser dynamics; equivalent circuit modeling; intrinsic modulation response; semiconductor laser; optical feedback; nonlinear dynamics; bifurcations; chaos; laser chaos; semiconductor laser; chaotic laser diode; optical injection; semiconductor laser; dynamics and stability; laser coupling; integrated lasers