Dark pulse mode-locked laser based on aluminum zinc oxide coated D-shape fiber as saturable absorber
We have experimentally reported aluminum zinc oxide (AZO) as a novel saturable absorber to generate a mode-locked laser operating in dark pulsed regime. The D-shaped fiber was first prepared by side polishing a single-mode fiber to the 1 dB insertion loss. The AZO was dissolved in isopropyl alcohol...
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my.um.eprints.353262022-10-27T06:51:44Z http://eprints.um.edu.my/35326/ Dark pulse mode-locked laser based on aluminum zinc oxide coated D-shape fiber as saturable absorber Nizamani, Bilal Jafry, Afiq Arif Aminuddin Fizza, Ghulam Memon, Faisal Ahmed Salam, Sameer Najm, Mustafa Mohammed Abdul Khudus, Muhammad Imran Mustafa Hanafi, Effariza Apsari, Retna Harun, Sulaiman Wadi QC Physics TA Engineering (General). Civil engineering (General) We have experimentally reported aluminum zinc oxide (AZO) as a novel saturable absorber to generate a mode-locked laser operating in dark pulsed regime. The D-shaped fiber was first prepared by side polishing a single-mode fiber to the 1 dB insertion loss. The AZO was dissolved in isopropyl alcohol and then deposited onto the D-shaped fiber by drop casting method. By carefully optimizing the polarization of the cavity, a dark pulse was achieved, which remained stable within the pump power of 65.7-101.35 mW. Pulse width was 220 ns, and the pulse repetition rate was 1.85 MHz. Taylor & Francis 2021-11-02 Article PeerReviewed Nizamani, Bilal and Jafry, Afiq Arif Aminuddin and Fizza, Ghulam and Memon, Faisal Ahmed and Salam, Sameer and Najm, Mustafa Mohammed and Abdul Khudus, Muhammad Imran Mustafa and Hanafi, Effariza and Apsari, Retna and Harun, Sulaiman Wadi (2021) Dark pulse mode-locked laser based on aluminum zinc oxide coated D-shape fiber as saturable absorber. Fiber and Integrated Optics, 40 (4-6). pp. 322-334. ISSN 0146-8030, DOI https://doi.org/10.1080/01468030.2021.1995084 <https://doi.org/10.1080/01468030.2021.1995084>. 10.1080/01468030.2021.1995084 |
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QC Physics TA Engineering (General). Civil engineering (General) Nizamani, Bilal Jafry, Afiq Arif Aminuddin Fizza, Ghulam Memon, Faisal Ahmed Salam, Sameer Najm, Mustafa Mohammed Abdul Khudus, Muhammad Imran Mustafa Hanafi, Effariza Apsari, Retna Harun, Sulaiman Wadi Dark pulse mode-locked laser based on aluminum zinc oxide coated D-shape fiber as saturable absorber |
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We have experimentally reported aluminum zinc oxide (AZO) as a novel saturable absorber to generate a mode-locked laser operating in dark pulsed regime. The D-shaped fiber was first prepared by side polishing a single-mode fiber to the 1 dB insertion loss. The AZO was dissolved in isopropyl alcohol and then deposited onto the D-shaped fiber by drop casting method. By carefully optimizing the polarization of the cavity, a dark pulse was achieved, which remained stable within the pump power of 65.7-101.35 mW. Pulse width was 220 ns, and the pulse repetition rate was 1.85 MHz. |
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Nizamani, Bilal Jafry, Afiq Arif Aminuddin Fizza, Ghulam Memon, Faisal Ahmed Salam, Sameer Najm, Mustafa Mohammed Abdul Khudus, Muhammad Imran Mustafa Hanafi, Effariza Apsari, Retna Harun, Sulaiman Wadi |
author_facet |
Nizamani, Bilal Jafry, Afiq Arif Aminuddin Fizza, Ghulam Memon, Faisal Ahmed Salam, Sameer Najm, Mustafa Mohammed Abdul Khudus, Muhammad Imran Mustafa Hanafi, Effariza Apsari, Retna Harun, Sulaiman Wadi |
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Nizamani, Bilal |
title |
Dark pulse mode-locked laser based on aluminum zinc oxide coated D-shape fiber as saturable absorber |
title_short |
Dark pulse mode-locked laser based on aluminum zinc oxide coated D-shape fiber as saturable absorber |
title_full |
Dark pulse mode-locked laser based on aluminum zinc oxide coated D-shape fiber as saturable absorber |
title_fullStr |
Dark pulse mode-locked laser based on aluminum zinc oxide coated D-shape fiber as saturable absorber |
title_full_unstemmed |
Dark pulse mode-locked laser based on aluminum zinc oxide coated D-shape fiber as saturable absorber |
title_sort |
dark pulse mode-locked laser based on aluminum zinc oxide coated d-shape fiber as saturable absorber |
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Taylor & Francis |
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2021 |
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http://eprints.um.edu.my/35326/ |
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1748181076499496960 |
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13.211869 |