ANALYSIS OF OPTICAL FEEDBACK SEMICONDUCTOR LASER DIODES USING VOLTERRA - WIENER SERIES

In this study, external cavity laser diode has been modelled and non-linear equations of the system are solved using Volterra series. In the study, linearised laser diode's rate equations are reorganised for external cavity laser diodes and these equations are solved with harmonic input method...

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Main Authors: Remzi YILDIRIM, Kenan DANIŞMAN
Format: Article
Language:English
Published: Pamukkale University 1998-02-01
Series:Pamukkale University Journal of Engineering Sciences
Subjects:
Online Access:http://dergipark.ulakbim.gov.tr/pajes/article/view/5000090013
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author Remzi YILDIRIM
Kenan DANIŞMAN
author_facet Remzi YILDIRIM
Kenan DANIŞMAN
author_sort Remzi YILDIRIM
collection DOAJ
description In this study, external cavity laser diode has been modelled and non-linear equations of the system are solved using Volterra series. In the study, linearised laser diode's rate equations are reorganised for external cavity laser diodes and these equations are solved with harmonic input method using Volterra series. The transfer functions brought about for harmonics are obtained using Volterra-Weiner series approach. The stability analysis of system is completed from output to input using these transfer functions. In this study open system transfer function of the laser diode TF = (H1/1-G1) has been obtined. By plotting the Nyquist graph of the transfer function TF, it is show that, the laser diode operates as a current controlled oscillator.
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spelling doaj.art-b2b5826f7ec04ff590dad3f75d435f932023-02-15T16:15:26ZengPamukkale UniversityPamukkale University Journal of Engineering Sciences1300-70092147-58811998-02-01426756835000084081ANALYSIS OF OPTICAL FEEDBACK SEMICONDUCTOR LASER DIODES USING VOLTERRA - WIENER SERIESRemzi YILDIRIMKenan DANIŞMANIn this study, external cavity laser diode has been modelled and non-linear equations of the system are solved using Volterra series. In the study, linearised laser diode's rate equations are reorganised for external cavity laser diodes and these equations are solved with harmonic input method using Volterra series. The transfer functions brought about for harmonics are obtained using Volterra-Weiner series approach. The stability analysis of system is completed from output to input using these transfer functions. In this study open system transfer function of the laser diode TF = (H1/1-G1) has been obtined. By plotting the Nyquist graph of the transfer function TF, it is show that, the laser diode operates as a current controlled oscillator.http://dergipark.ulakbim.gov.tr/pajes/article/view/5000090013Lazer diyod, Volterra, Kararlılık, Distorsiyon
spellingShingle Remzi YILDIRIM
Kenan DANIŞMAN
ANALYSIS OF OPTICAL FEEDBACK SEMICONDUCTOR LASER DIODES USING VOLTERRA - WIENER SERIES
Pamukkale University Journal of Engineering Sciences
Lazer diyod, Volterra, Kararlılık, Distorsiyon
title ANALYSIS OF OPTICAL FEEDBACK SEMICONDUCTOR LASER DIODES USING VOLTERRA - WIENER SERIES
title_full ANALYSIS OF OPTICAL FEEDBACK SEMICONDUCTOR LASER DIODES USING VOLTERRA - WIENER SERIES
title_fullStr ANALYSIS OF OPTICAL FEEDBACK SEMICONDUCTOR LASER DIODES USING VOLTERRA - WIENER SERIES
title_full_unstemmed ANALYSIS OF OPTICAL FEEDBACK SEMICONDUCTOR LASER DIODES USING VOLTERRA - WIENER SERIES
title_short ANALYSIS OF OPTICAL FEEDBACK SEMICONDUCTOR LASER DIODES USING VOLTERRA - WIENER SERIES
title_sort analysis of optical feedback semiconductor laser diodes using volterra wiener series
topic Lazer diyod, Volterra, Kararlılık, Distorsiyon
url http://dergipark.ulakbim.gov.tr/pajes/article/view/5000090013
work_keys_str_mv AT remziyildirim analysisofopticalfeedbacksemiconductorlaserdiodesusingvolterrawienerseries
AT kenandanisman analysisofopticalfeedbacksemiconductorlaserdiodesusingvolterrawienerseries