DocumentCode
2501742
Title
Effect of temperature and external optical feedback on intensity and phase noise characteristics in single-mode fiber grating Fabry-Perot laser
Author
Hisham, H.K. ; Abas, A.F. ; Mahdiraji, G.A. ; Mandi, M.A. ; Adikan, F. R Mahamd
Author_Institution
Wireless & Photonic Networks Res. Centre, Univ. Putra Malaysia, Serdang, Malaysia
fYear
2012
fDate
1-3 Oct. 2012
Firstpage
370
Lastpage
376
Abstract
The combined effect of temperature variation and external optical feedback (OFB) on the relative intensity noise (RIN) and phase noise (FN) characteristics of fiber grating Fabry-Perot (FGFP) laser for the first time, is investigated numerically by modifying the well-known laser rate equations. The temperature dependence (TD) of RIN and FN characteristics is calculated according to TD of laser cavity parameters; not by using the well-known Pankove equation. The effect of external OFB on RIN and FN characteristics is calculated according to its effect on laser threshold carrier density. The simulation of the frequency spectra of RIN and FN are performed by fast Fourier transform (FFT). We show that FBG can be use to control the external OFB level, thereby; controlling noise level of the laser. Results show that the optimum range of working temperature for FGFP laser for low noise characteristic is within ±2 °C from the FBG reference temperature.
Keywords
Bragg gratings; fibre lasers; laser noise; optical feedback; phase noise; FBG reference temperature; Pankove equation; external OFB level; external optical feedback; fast Fourier transform; frequency spectra; laser cavity parameters; laser rate equations; laser threshold carrier density; noise level; phase noise characteristics; relative intensity noise; single-mode fiber grating Fabry-Perot laser; temperature dependence; temperature variation; working temperature; Decision support systems; Photonics;
fLanguage
English
Publisher
ieee
Conference_Titel
Photonics (ICP), 2012 IEEE 3rd International Conference on
Conference_Location
Penang
Print_ISBN
978-1-4673-1461-9
Type
conf
DOI
10.1109/ICP.2012.6379846
Filename
6379846
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