Investigation of tungsten trioxide as a saturable absorber for mode-locked generation

Low-dimensional materials as saturable absorbers (SA) for pulsed laser applications have gain wide interest due to high nonlinearity and strong light-matter interaction. Various materials have been investigated such as graphene, transition metal oxides (TMO), transition metal dichalcogenides, and to...

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Main Authors: M. A. W., Abdul Hadi, Lau, Kuen Yao, Zainol Abidin, Nadiah Husseini, Omar Baki, Sharudin, Ng, E. K., Lee, Han Kee, Mahdi, Mohd Adzir
Format: Article
Language:English
Published: Elsevier 2020
Online Access:http://psasir.upm.edu.my/id/eprint/89454/
http://psasir.upm.edu.my/id/eprint/89454/1/MODE.pdf
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author M. A. W., Abdul Hadi
Lau, Kuen Yao
Zainol Abidin, Nadiah Husseini
Omar Baki, Sharudin
Ng, E. K.
Lee, Han Kee
Mahdi, Mohd Adzir
author_facet M. A. W., Abdul Hadi
Lau, Kuen Yao
Zainol Abidin, Nadiah Husseini
Omar Baki, Sharudin
Ng, E. K.
Lee, Han Kee
Mahdi, Mohd Adzir
author_sort M. A. W., Abdul Hadi
building UPM Institutional Repository
collection Online Access
description Low-dimensional materials as saturable absorbers (SA) for pulsed laser applications have gain wide interest due to high nonlinearity and strong light-matter interaction. Various materials have been investigated such as graphene, transition metal oxides (TMO), transition metal dichalcogenides, and topological insulators. Tungsten trioxide (WO3); a cheap and nontoxic type of TMO has not yet been investigated for mode-locked pulsed fiber laser (MLFL) generation despite extensive employment as applications in other fields. WO3 is very attractive with spectral absorption extending in the broad near infra-red region, good mechanical strength, high resistance to photo corrosion, and is one of the few oxides that has high thermal and chemical stability. A tungsten trioxide (WO3) based saturable absorber (SA) fabricated via deposition of WO3 composite on tapered fiber was demonstrated. The WO3 weight percentage was varied from 0.005 to 1.235 wt% to investigate the effect on nonlinear saturable parameters and on mode-locked lasing performance. It was determined that the nonlinear saturable parameters were not dependent on weight percentage within its working range; 0.025 to 1.103 wt%. The generation self-started with 35–70 mW pump power, where the pulse durations and spectral bandwidths fall within the range of 810–940 fs and 8–12 nm, respectively. This experimental investigation provides insight on WO3 as a saturable absorber for mode-locked pulse laser generation. The utilization of this nanomaterial is aimed to cut down the cost the existing SA technology while providing enhanced durability and shelf-life.
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spelling upm-894542021-08-18T05:22:34Z http://psasir.upm.edu.my/id/eprint/89454/ Investigation of tungsten trioxide as a saturable absorber for mode-locked generation M. A. W., Abdul Hadi Lau, Kuen Yao Zainol Abidin, Nadiah Husseini Omar Baki, Sharudin Ng, E. K. Lee, Han Kee Mahdi, Mohd Adzir Low-dimensional materials as saturable absorbers (SA) for pulsed laser applications have gain wide interest due to high nonlinearity and strong light-matter interaction. Various materials have been investigated such as graphene, transition metal oxides (TMO), transition metal dichalcogenides, and topological insulators. Tungsten trioxide (WO3); a cheap and nontoxic type of TMO has not yet been investigated for mode-locked pulsed fiber laser (MLFL) generation despite extensive employment as applications in other fields. WO3 is very attractive with spectral absorption extending in the broad near infra-red region, good mechanical strength, high resistance to photo corrosion, and is one of the few oxides that has high thermal and chemical stability. A tungsten trioxide (WO3) based saturable absorber (SA) fabricated via deposition of WO3 composite on tapered fiber was demonstrated. The WO3 weight percentage was varied from 0.005 to 1.235 wt% to investigate the effect on nonlinear saturable parameters and on mode-locked lasing performance. It was determined that the nonlinear saturable parameters were not dependent on weight percentage within its working range; 0.025 to 1.103 wt%. The generation self-started with 35–70 mW pump power, where the pulse durations and spectral bandwidths fall within the range of 810–940 fs and 8–12 nm, respectively. This experimental investigation provides insight on WO3 as a saturable absorber for mode-locked pulse laser generation. The utilization of this nanomaterial is aimed to cut down the cost the existing SA technology while providing enhanced durability and shelf-life. Elsevier 2020 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/89454/1/MODE.pdf M. A. W., Abdul Hadi and Lau, Kuen Yao and Zainol Abidin, Nadiah Husseini and Omar Baki, Sharudin and Ng, E. K. and Lee, Han Kee and Mahdi, Mohd Adzir (2020) Investigation of tungsten trioxide as a saturable absorber for mode-locked generation. Optics and Laser Technology, 132. art. no. 106496. pp. 1-10. ISSN 0030-3992 https://www.sciencedirect.com/science/article/pii/S0030399220311294 10.1016/j.optlastec.2020.106496
spellingShingle M. A. W., Abdul Hadi
Lau, Kuen Yao
Zainol Abidin, Nadiah Husseini
Omar Baki, Sharudin
Ng, E. K.
Lee, Han Kee
Mahdi, Mohd Adzir
Investigation of tungsten trioxide as a saturable absorber for mode-locked generation
title Investigation of tungsten trioxide as a saturable absorber for mode-locked generation
title_full Investigation of tungsten trioxide as a saturable absorber for mode-locked generation
title_fullStr Investigation of tungsten trioxide as a saturable absorber for mode-locked generation
title_full_unstemmed Investigation of tungsten trioxide as a saturable absorber for mode-locked generation
title_short Investigation of tungsten trioxide as a saturable absorber for mode-locked generation
title_sort investigation of tungsten trioxide as a saturable absorber for mode-locked generation
url http://psasir.upm.edu.my/id/eprint/89454/
http://psasir.upm.edu.my/id/eprint/89454/
http://psasir.upm.edu.my/id/eprint/89454/
http://psasir.upm.edu.my/id/eprint/89454/1/MODE.pdf