Frequency modulation response due to the intensity modulation of fiber-grating Fabry–Perot lasers

A comprehensive study on the small-signal frequency modulation (FM) characteristics of a fiber-grating Fabry–Perot (FGFP) laser is numerically conducted. Fiber Bragg grating (FBG) is used as a wavelength selective element to control the properties of the laser output by controlling the external opti...

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Main Authors: Hisham, Hisham Kadhum, Mahdiraji, Ghafour Amouzad, Abas, Ahmad Fauzi, Mahdi, Mohd Adzir, Adikan, Faisal Rafiq Mahamd
Format: Article
Language:English
Published: Taylor & Francis 2014
Online Access:http://psasir.upm.edu.my/id/eprint/37718/1/Frequency%20modulation%20response%20due%20to%20the%20intensity%20modulation%20of%20fiber.pdf
http://psasir.upm.edu.my/id/eprint/37718/
http://www.tandfonline.com/doi/abs/10.1080/09500340.2014.920536
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spelling my.upm.eprints.377182015-09-16T23:38:27Z http://psasir.upm.edu.my/id/eprint/37718/ Frequency modulation response due to the intensity modulation of fiber-grating Fabry–Perot lasers Hisham, Hisham Kadhum Mahdiraji, Ghafour Amouzad Abas, Ahmad Fauzi Mahdi, Mohd Adzir Adikan, Faisal Rafiq Mahamd A comprehensive study on the small-signal frequency modulation (FM) characteristics of a fiber-grating Fabry–Perot (FGFP) laser is numerically conducted. Fiber Bragg grating (FBG) is used as a wavelength selective element to control the properties of the laser output by controlling the external optical feedback (OFB) level. In addition to the external OFB level, the effect of other parameters such as temperature, injection current, cavity volume, nonlinear gain compression factor, linewidth enhancement factor, and fiber-grating (FG) parameters on FM characteristics of the laser are investigated. The study is performed by modifying a set of rate equations that are solved by considering the effects of external OFB and ambient temperature (T) variations. The temperature dependence (TD) of FM characteristics is calculated according to TD of laser parameters instead of using well-known Pankove relationship. Results show that the optimum external fiber length (Lext) is 3.1 cm and the optimum range of working temperature for FGFP laser is within ± 2 °C from the FBG reference temperature (To). Also, it is shown that antireflection (AR) coating reflectivity and the linewidth enhancement factor have no significant effect on the FM response. The FM spectra peak amplitude is less than 5 dB with 5 mW output power. Good temperature stability is also obtained. Taylor & Francis 2014 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/37718/1/Frequency%20modulation%20response%20due%20to%20the%20intensity%20modulation%20of%20fiber.pdf Hisham, Hisham Kadhum and Mahdiraji, Ghafour Amouzad and Abas, Ahmad Fauzi and Mahdi, Mohd Adzir and Adikan, Faisal Rafiq Mahamd (2014) Frequency modulation response due to the intensity modulation of fiber-grating Fabry–Perot lasers. Journal of Modern Optics, 61 (13). pp. 1081-1091. ISSN 0950-0340; ESSN: 1362-3044 http://www.tandfonline.com/doi/abs/10.1080/09500340.2014.920536 10.1080/09500340.2014.920536
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description A comprehensive study on the small-signal frequency modulation (FM) characteristics of a fiber-grating Fabry–Perot (FGFP) laser is numerically conducted. Fiber Bragg grating (FBG) is used as a wavelength selective element to control the properties of the laser output by controlling the external optical feedback (OFB) level. In addition to the external OFB level, the effect of other parameters such as temperature, injection current, cavity volume, nonlinear gain compression factor, linewidth enhancement factor, and fiber-grating (FG) parameters on FM characteristics of the laser are investigated. The study is performed by modifying a set of rate equations that are solved by considering the effects of external OFB and ambient temperature (T) variations. The temperature dependence (TD) of FM characteristics is calculated according to TD of laser parameters instead of using well-known Pankove relationship. Results show that the optimum external fiber length (Lext) is 3.1 cm and the optimum range of working temperature for FGFP laser is within ± 2 °C from the FBG reference temperature (To). Also, it is shown that antireflection (AR) coating reflectivity and the linewidth enhancement factor have no significant effect on the FM response. The FM spectra peak amplitude is less than 5 dB with 5 mW output power. Good temperature stability is also obtained.
format Article
author Hisham, Hisham Kadhum
Mahdiraji, Ghafour Amouzad
Abas, Ahmad Fauzi
Mahdi, Mohd Adzir
Adikan, Faisal Rafiq Mahamd
spellingShingle Hisham, Hisham Kadhum
Mahdiraji, Ghafour Amouzad
Abas, Ahmad Fauzi
Mahdi, Mohd Adzir
Adikan, Faisal Rafiq Mahamd
Frequency modulation response due to the intensity modulation of fiber-grating Fabry–Perot lasers
author_facet Hisham, Hisham Kadhum
Mahdiraji, Ghafour Amouzad
Abas, Ahmad Fauzi
Mahdi, Mohd Adzir
Adikan, Faisal Rafiq Mahamd
author_sort Hisham, Hisham Kadhum
title Frequency modulation response due to the intensity modulation of fiber-grating Fabry–Perot lasers
title_short Frequency modulation response due to the intensity modulation of fiber-grating Fabry–Perot lasers
title_full Frequency modulation response due to the intensity modulation of fiber-grating Fabry–Perot lasers
title_fullStr Frequency modulation response due to the intensity modulation of fiber-grating Fabry–Perot lasers
title_full_unstemmed Frequency modulation response due to the intensity modulation of fiber-grating Fabry–Perot lasers
title_sort frequency modulation response due to the intensity modulation of fiber-grating fabry–perot lasers
publisher Taylor & Francis
publishDate 2014
url http://psasir.upm.edu.my/id/eprint/37718/1/Frequency%20modulation%20response%20due%20to%20the%20intensity%20modulation%20of%20fiber.pdf
http://psasir.upm.edu.my/id/eprint/37718/
http://www.tandfonline.com/doi/abs/10.1080/09500340.2014.920536
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