Experimental and theoretical studies on C-band bismuthbased erbium doped fiber amplifier

A performance of the Bismuth-based Erbium-doped fiber amplifier (Bi-EDFA) is experimentally and theoretically investigated using 1480nm forward pumping scheme. In the theoretical analysis, the rate and power propagation equations are solved to examine the effect of fiber length on the bandwidth of t...

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Main Authors: Parvizi, Roghaieh, Emami, Siamak Dawazdah, Shahi, Sharifeh, Harun, Sulaiman Wadi, Ahmad, Harith
Format: Article
Published: INOE 2009
Subjects:
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author Parvizi, Roghaieh
Emami, Siamak Dawazdah
Shahi, Sharifeh
Harun, Sulaiman Wadi
Ahmad, Harith
author_facet Parvizi, Roghaieh
Emami, Siamak Dawazdah
Shahi, Sharifeh
Harun, Sulaiman Wadi
Ahmad, Harith
author_sort Parvizi, Roghaieh
collection UM
description A performance of the Bismuth-based Erbium-doped fiber amplifier (Bi-EDFA) is experimentally and theoretically investigated using 1480nm forward pumping scheme. In the theoretical analysis, the rate and power propagation equations are solved to examine the effect of fiber length on the bandwidth of the gain spectra. At C-band region, the small signal gain of the Bi-EDFA varies from 20 to 23dB with 49cm long Bi-EDF and 150mW of 1480nm pump power. It is shown that the calculated gain and noise figure are in good agreement with the experimental results, verifying the feasibility of our theoretical model. However, the experimental result shows a relatively lower gain and higher noise figure compared to the theoretical result due to the spurious reflection in the cavity and insertion loss of the Bi-EDF which were neglected in our theoretical model.
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spelling um.eprints-197722018-11-30T01:11:13Z http://eprints.um.edu.my/19772/ Experimental and theoretical studies on C-band bismuthbased erbium doped fiber amplifier Parvizi, Roghaieh Emami, Siamak Dawazdah Shahi, Sharifeh Harun, Sulaiman Wadi Ahmad, Harith QC Physics TK Electrical engineering. Electronics Nuclear engineering A performance of the Bismuth-based Erbium-doped fiber amplifier (Bi-EDFA) is experimentally and theoretically investigated using 1480nm forward pumping scheme. In the theoretical analysis, the rate and power propagation equations are solved to examine the effect of fiber length on the bandwidth of the gain spectra. At C-band region, the small signal gain of the Bi-EDFA varies from 20 to 23dB with 49cm long Bi-EDF and 150mW of 1480nm pump power. It is shown that the calculated gain and noise figure are in good agreement with the experimental results, verifying the feasibility of our theoretical model. However, the experimental result shows a relatively lower gain and higher noise figure compared to the theoretical result due to the spurious reflection in the cavity and insertion loss of the Bi-EDF which were neglected in our theoretical model. INOE 2009 Article PeerReviewed Parvizi, Roghaieh and Emami, Siamak Dawazdah and Shahi, Sharifeh and Harun, Sulaiman Wadi and Ahmad, Harith (2009) Experimental and theoretical studies on C-band bismuthbased erbium doped fiber amplifier. Optoelectronics and Advanced Materials-Rapid Communications, 3 (10). pp. 971-974. ISSN 1842-6573, https://oam-rc.inoe.ro/index.php?option=magazine&op=view&idu=821&catid=43
spellingShingle QC Physics
TK Electrical engineering. Electronics Nuclear engineering
Parvizi, Roghaieh
Emami, Siamak Dawazdah
Shahi, Sharifeh
Harun, Sulaiman Wadi
Ahmad, Harith
Experimental and theoretical studies on C-band bismuthbased erbium doped fiber amplifier
title Experimental and theoretical studies on C-band bismuthbased erbium doped fiber amplifier
title_full Experimental and theoretical studies on C-band bismuthbased erbium doped fiber amplifier
title_fullStr Experimental and theoretical studies on C-band bismuthbased erbium doped fiber amplifier
title_full_unstemmed Experimental and theoretical studies on C-band bismuthbased erbium doped fiber amplifier
title_short Experimental and theoretical studies on C-band bismuthbased erbium doped fiber amplifier
title_sort experimental and theoretical studies on c band bismuthbased erbium doped fiber amplifier
topic QC Physics
TK Electrical engineering. Electronics Nuclear engineering
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AT emamisiamakdawazdah experimentalandtheoreticalstudiesoncbandbismuthbasederbiumdopedfiberamplifier
AT shahisharifeh experimentalandtheoreticalstudiesoncbandbismuthbasederbiumdopedfiberamplifier
AT harunsulaimanwadi experimentalandtheoreticalstudiesoncbandbismuthbasederbiumdopedfiberamplifier
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