Effect of Relative Intensity Noise in Optical Transmission Systems Employing Wavelength Conversion Based on XPM and MZI

The overall intensity noise spectrum due to laser relative intensity noise (RIN) and interferometric conversion of laser phase noise after passing through wavelength conversion (WC) based on cross-phase modulation (XPM) and Mach-Zehnder interferometer (MZI) is modeled along with the resulting noise...

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Main Authors: Hiew, C. C., Abbou, F. M., Chuah, Hean Teik
Format: Article
Published: Taylor and Francis Online 2005
Subjects:
Online Access:http://shdl.mmu.edu.my/2312/
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author Hiew, C. C.
Abbou, F. M.
Chuah, Hean Teik
author_facet Hiew, C. C.
Abbou, F. M.
Chuah, Hean Teik
author_sort Hiew, C. C.
building MMU Institutional Repository
collection Online Access
description The overall intensity noise spectrum due to laser relative intensity noise (RIN) and interferometric conversion of laser phase noise after passing through wavelength conversion (WC) based on cross-phase modulation (XPM) and Mach-Zehnder interferometer (MZI) is modeled along with the resulting noise at the direct-detection receiver It is found that the effect of the laser-induced noise at the receiver is negligible when the MZI operated at quadrature and has a free spectral range (FSR) > 0.01 GHz. Only when FSR < 0.01 GHz is a power penalty induced that increases with decreasing laser current bias, j(0) (0.8 dB, j(0) = 2; 1.7 dB, j(0) = 1.5; 5.2 dB, j(0) = 1.1).
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spelling mmu-23122021-08-19T08:37:03Z http://shdl.mmu.edu.my/2312/ Effect of Relative Intensity Noise in Optical Transmission Systems Employing Wavelength Conversion Based on XPM and MZI Hiew, C. C. Abbou, F. M. Chuah, Hean Teik TK5101-6720 Telecommunication. Including telegraphy, telephone, radio, radar, television The overall intensity noise spectrum due to laser relative intensity noise (RIN) and interferometric conversion of laser phase noise after passing through wavelength conversion (WC) based on cross-phase modulation (XPM) and Mach-Zehnder interferometer (MZI) is modeled along with the resulting noise at the direct-detection receiver It is found that the effect of the laser-induced noise at the receiver is negligible when the MZI operated at quadrature and has a free spectral range (FSR) > 0.01 GHz. Only when FSR < 0.01 GHz is a power penalty induced that increases with decreasing laser current bias, j(0) (0.8 dB, j(0) = 2; 1.7 dB, j(0) = 1.5; 5.2 dB, j(0) = 1.1). Taylor and Francis Online 2005 Article NonPeerReviewed Hiew, C. C. and Abbou, F. M. and Chuah, Hean Teik (2005) Effect of Relative Intensity Noise in Optical Transmission Systems Employing Wavelength Conversion Based on XPM and MZI. Fiber and Integrated Optics, 24 (1). pp. 45-54. ISSN 0146-8030 http://dx.doi.org/10.1080/01468030590887687 doi:10.1080/01468030590887687 doi:10.1080/01468030590887687
spellingShingle TK5101-6720 Telecommunication. Including telegraphy, telephone, radio, radar, television
Hiew, C. C.
Abbou, F. M.
Chuah, Hean Teik
Effect of Relative Intensity Noise in Optical Transmission Systems Employing Wavelength Conversion Based on XPM and MZI
title Effect of Relative Intensity Noise in Optical Transmission Systems Employing Wavelength Conversion Based on XPM and MZI
title_full Effect of Relative Intensity Noise in Optical Transmission Systems Employing Wavelength Conversion Based on XPM and MZI
title_fullStr Effect of Relative Intensity Noise in Optical Transmission Systems Employing Wavelength Conversion Based on XPM and MZI
title_full_unstemmed Effect of Relative Intensity Noise in Optical Transmission Systems Employing Wavelength Conversion Based on XPM and MZI
title_short Effect of Relative Intensity Noise in Optical Transmission Systems Employing Wavelength Conversion Based on XPM and MZI
title_sort effect of relative intensity noise in optical transmission systems employing wavelength conversion based on xpm and mzi
topic TK5101-6720 Telecommunication. Including telegraphy, telephone, radio, radar, television
url http://shdl.mmu.edu.my/2312/
http://shdl.mmu.edu.my/2312/
http://shdl.mmu.edu.my/2312/