DocumentCode
1401483
Title
Bistability and All-Optical Memory in Dual-Mode Diode Lasers With Time-Delayed Optical Feedback
Author
Brandonisio, N. ; Heinricht, P. ; Osborne, S. ; Amann, A. ; O´Brien, S.
Author_Institution
Tyndall Nat. Inst., Univ. Coll. Cork, Cork, Ireland
Volume
4
Issue
1
fYear
2012
Firstpage
95
Lastpage
103
Abstract
A proposal for an all-optical memory based on a bistability of single-mode states in a dual-mode diode laser with time-delayed optical feedback is presented. The system is modeled using a multimode extension of the Lang-Kobayashi equations with injected optical pulses. We uncover the bifurcation structure by deriving analytical expressions for the boundaries of the bistable region and demonstrate how the delay time in the external cavity determines an optimal pulse duration for efficient switching of the memory element. We also show the relevant role played by gain saturation and by the dual-mode solutions of the Lang-Kobayashi equations for the existence of the bistable regions. Our results demonstrate that feedback-induced bistability can lead to significant performance improvements when compared to memory elements based on the injection locking bistability in dual-mode devices.
Keywords
bifurcation; delays; laser cavity resonators; laser feedback; laser mode locking; optical bistability; optical storage; optical switches; semiconductor lasers; Lang-Kobayashi equations; all-optical memory; bifurcation structure; dual-mode diode lasers; feedback-induced bistability; gain saturation; injected optical pulses; injection locking bistability; multimode extension; optical switching; optimal pulse duration; single-mode states; time-delayed optical feedback; Bifurcation; Cavity resonators; Electronic countermeasures; Mathematical model; Optical feedback; Optical pulses; Dual-mode diode lasers; Lambert function; all-optical memory; bistability; external optical feedback;
fLanguage
English
Journal_Title
Photonics Journal, IEEE
Publisher
ieee
ISSN
1943-0655
Type
jour
DOI
10.1109/JPHOT.2011.2180015
Filename
6107509
Link To Document