DocumentCode
1291845
Title
Absorptive switching and spectral characteristics of the side-injection light-controlled bistable laser diode
Author
Pegg, Steven I. ; Adams, M.J. ; Poguntke, K.
Author_Institution
Dept. of Phys., Essex Univ., Colchester, UK
Volume
36
Issue
1
fYear
2000
Firstpage
94
Lastpage
99
Abstract
Experimental results characterizing the operation of the side-injection light-controlled bistable laser diode (SILC-BLD) have been accurately modeled using simple gain expressions and rate equations. Light output versus gain section drive current has been calculated and agrees well with experiment. Further, voltage shifts (due to carrier redistribution between the gain and absorber regions) measured at switch on and off have also been modeled successfully for what is believed to be the first time in a quantum-well laser to the authors´ knowledge, and agree well with experiment. Spectrally, subthreshold power-averaged wavelength versus gain section drive current measurements show a parabolic form (caused by the interplay between band filling, energy gap shrinkage, and the increase in stimulated emission). This has been successfully modeled using quantum-well gain and the associated spontaneous emission spectra, and should have wide applicability to all Fabry-Perot semiconductor lasers.
Keywords
laser theory; optical bistability; optical saturable absorption; optical switches; quantum well lasers; spectral analysis; spontaneous emission; Fabry-Perot semiconductor lasers; absorptive switching characteristics; band filling; carrier redistribution; energy gap shrinkage; gain expressions; gain section drive current; light output; quantum-well gain; quantum-well laser; rate equations; saturable absorber; side-injection light-controlled bistable laser diode; spectral characteristics; spontaneous emission spectra; stimulated emission; subthreshold power-averaged wavelength; voltage shifts; Current measurement; Diode lasers; Equations; Filling; Gain measurement; Quantum well lasers; Switches; Time measurement; Voltage; Wavelength measurement;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/3.817644
Filename
817644
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