Multiwavelength random fiber laser based on dual-bidirectional SOA at different comb filters

We successfully demonstrated and investigated the lasing performance of multiwavelength random fiber laser (MWRFL) using dual bidirectional semiconductor optical amplifiers (SOA) with Mach-Zehnder interferometer (MZI)based on polarization maintaining fiber (PMF) and Sagnac loop mirror (SLM). This wo...

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Main Authors: Awang Lah, Airull Azizi, David, Allen Paul, Muhamad Aliza, Hanun Enani, Md. Yusoff, Nelidya, Ambran, Sumiaty, Sulaiman, Abdul Hadi, Salleh, Mohd. Shahril
Format: Conference or Workshop Item
Published: 2023
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Online Access:http://eprints.utm.my/108421/
http://dx.doi.org/10.1109/ICCCE58854.2023.10246066
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spelling my.utm.1084212024-11-01T02:45:20Z http://eprints.utm.my/108421/ Multiwavelength random fiber laser based on dual-bidirectional SOA at different comb filters Awang Lah, Airull Azizi David, Allen Paul Muhamad Aliza, Hanun Enani Md. Yusoff, Nelidya Ambran, Sumiaty Sulaiman, Abdul Hadi Salleh, Mohd. Shahril TK Electrical engineering. Electronics Nuclear engineering We successfully demonstrated and investigated the lasing performance of multiwavelength random fiber laser (MWRFL) using dual bidirectional semiconductor optical amplifiers (SOA) with Mach-Zehnder interferometer (MZI)based on polarization maintaining fiber (PMF) and Sagnac loop mirror (SLM). This work provides a thorough understanding on the MWRFL performance, and it is beneficial in determining the suitable comb filters to be used depending on the applications. The PMF-based MZI generated 50 lasing lines within the 3 dB bandwidth flatness. The lasing peak power is 19.1 dBm with an extinction ratio (ER) of 11.65 dB, and peak power deviations of 0.17 dB. The SLM produced 45 lasing lines within the 3 dB bandwidth flatness. The peak power is -17.6 dBm with an ER of 12.7 dB and peak power deviations of 0.11 dB. Tuning of the polarization controller plate can change the MWRFL performance. The PC plate adjustment in PMF-based MZI can increase the ER up to 61% while in SLM, the ER value is triple. Even though the SLM has a lower number of lasing lines compared to the PMF-based MZI, however, it has a higher ER value and better lasing stability within 120 minutes. 2023-09-15 Conference or Workshop Item PeerReviewed Awang Lah, Airull Azizi and David, Allen Paul and Muhamad Aliza, Hanun Enani and Md. Yusoff, Nelidya and Ambran, Sumiaty and Sulaiman, Abdul Hadi and Salleh, Mohd. Shahril (2023) Multiwavelength random fiber laser based on dual-bidirectional SOA at different comb filters. In: 9th International Conference on Computer and Communication Engineering, ICCCE 2023, 15 August 2023 - 16 August 2023, Kuala Lumpur, Malaysia. http://dx.doi.org/10.1109/ICCCE58854.2023.10246066
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Awang Lah, Airull Azizi
David, Allen Paul
Muhamad Aliza, Hanun Enani
Md. Yusoff, Nelidya
Ambran, Sumiaty
Sulaiman, Abdul Hadi
Salleh, Mohd. Shahril
Multiwavelength random fiber laser based on dual-bidirectional SOA at different comb filters
description We successfully demonstrated and investigated the lasing performance of multiwavelength random fiber laser (MWRFL) using dual bidirectional semiconductor optical amplifiers (SOA) with Mach-Zehnder interferometer (MZI)based on polarization maintaining fiber (PMF) and Sagnac loop mirror (SLM). This work provides a thorough understanding on the MWRFL performance, and it is beneficial in determining the suitable comb filters to be used depending on the applications. The PMF-based MZI generated 50 lasing lines within the 3 dB bandwidth flatness. The lasing peak power is 19.1 dBm with an extinction ratio (ER) of 11.65 dB, and peak power deviations of 0.17 dB. The SLM produced 45 lasing lines within the 3 dB bandwidth flatness. The peak power is -17.6 dBm with an ER of 12.7 dB and peak power deviations of 0.11 dB. Tuning of the polarization controller plate can change the MWRFL performance. The PC plate adjustment in PMF-based MZI can increase the ER up to 61% while in SLM, the ER value is triple. Even though the SLM has a lower number of lasing lines compared to the PMF-based MZI, however, it has a higher ER value and better lasing stability within 120 minutes.
format Conference or Workshop Item
author Awang Lah, Airull Azizi
David, Allen Paul
Muhamad Aliza, Hanun Enani
Md. Yusoff, Nelidya
Ambran, Sumiaty
Sulaiman, Abdul Hadi
Salleh, Mohd. Shahril
author_facet Awang Lah, Airull Azizi
David, Allen Paul
Muhamad Aliza, Hanun Enani
Md. Yusoff, Nelidya
Ambran, Sumiaty
Sulaiman, Abdul Hadi
Salleh, Mohd. Shahril
author_sort Awang Lah, Airull Azizi
title Multiwavelength random fiber laser based on dual-bidirectional SOA at different comb filters
title_short Multiwavelength random fiber laser based on dual-bidirectional SOA at different comb filters
title_full Multiwavelength random fiber laser based on dual-bidirectional SOA at different comb filters
title_fullStr Multiwavelength random fiber laser based on dual-bidirectional SOA at different comb filters
title_full_unstemmed Multiwavelength random fiber laser based on dual-bidirectional SOA at different comb filters
title_sort multiwavelength random fiber laser based on dual-bidirectional soa at different comb filters
publishDate 2023
url http://eprints.utm.my/108421/
http://dx.doi.org/10.1109/ICCCE58854.2023.10246066
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score 13.211869