Multi-Wavelength Q-Switched Ytterbium-Doped Fiber Laser with Multi-Walled Carbon Nanotubes

We demonstrate a passively multi-wavelength Q-switched Ytterbium-doped fiber laser (YDFL) based on a multi-wall carbon nanotubes embedded in polyethylene oxide film as saturable absorber. The YDFL generates a stable multi-wavelength with spacing of 1.9 nm as the 980 nm pump power is fixed within 62....

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Main Authors: Al-Masoodi, Ahmed Hasan Hamood, Ahmed, Mahmoud Hazzaa M., Arof, Hamzah, Harun, Sulaiman Wadi
Format: Article
Published: Taylor & Francis 2018
Subjects:
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author Al-Masoodi, Ahmed Hasan Hamood
Ahmed, Mahmoud Hazzaa M.
Arof, Hamzah
Harun, Sulaiman Wadi
author_facet Al-Masoodi, Ahmed Hasan Hamood
Ahmed, Mahmoud Hazzaa M.
Arof, Hamzah
Harun, Sulaiman Wadi
author_sort Al-Masoodi, Ahmed Hasan Hamood
collection UM
description We demonstrate a passively multi-wavelength Q-switched Ytterbium-doped fiber laser (YDFL) based on a multi-wall carbon nanotubes embedded in polyethylene oxide film as saturable absorber. The YDFL generates a stable multi-wavelength with spacing of 1.9 nm as the 980 nm pump power is fixed within 62. 4 mW and 78.0 mW. The repetition rate of the laser is tunable from 10.41 to 29.04 kHz by increasing the pump power from the threshold power of 62.4 mW to 78 mW. At 78 mW pump power, the maximum pulse energy of 38 nJ and the shortest pulse width of 8.87 µs are obtained.
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spelling um.eprints-225292019-09-24T06:49:01Z http://eprints.um.edu.my/22529/ Multi-Wavelength Q-Switched Ytterbium-Doped Fiber Laser with Multi-Walled Carbon Nanotubes Al-Masoodi, Ahmed Hasan Hamood Ahmed, Mahmoud Hazzaa M. Arof, Hamzah Harun, Sulaiman Wadi TK Electrical engineering. Electronics Nuclear engineering We demonstrate a passively multi-wavelength Q-switched Ytterbium-doped fiber laser (YDFL) based on a multi-wall carbon nanotubes embedded in polyethylene oxide film as saturable absorber. The YDFL generates a stable multi-wavelength with spacing of 1.9 nm as the 980 nm pump power is fixed within 62. 4 mW and 78.0 mW. The repetition rate of the laser is tunable from 10.41 to 29.04 kHz by increasing the pump power from the threshold power of 62.4 mW to 78 mW. At 78 mW pump power, the maximum pulse energy of 38 nJ and the shortest pulse width of 8.87 µs are obtained. Taylor & Francis 2018 Article PeerReviewed Al-Masoodi, Ahmed Hasan Hamood and Ahmed, Mahmoud Hazzaa M. and Arof, Hamzah and Harun, Sulaiman Wadi (2018) Multi-Wavelength Q-Switched Ytterbium-Doped Fiber Laser with Multi-Walled Carbon Nanotubes. Fiber and Integrated Optics, 37 (2). pp. 92-102. ISSN 0146-8030, DOI https://doi.org/10.1080/01468030.2018.1444825 <https://doi.org/10.1080/01468030.2018.1444825>. https://doi.org/10.1080/01468030.2018.1444825 doi:10.1080/01468030.2018.1444825
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Al-Masoodi, Ahmed Hasan Hamood
Ahmed, Mahmoud Hazzaa M.
Arof, Hamzah
Harun, Sulaiman Wadi
Multi-Wavelength Q-Switched Ytterbium-Doped Fiber Laser with Multi-Walled Carbon Nanotubes
title Multi-Wavelength Q-Switched Ytterbium-Doped Fiber Laser with Multi-Walled Carbon Nanotubes
title_full Multi-Wavelength Q-Switched Ytterbium-Doped Fiber Laser with Multi-Walled Carbon Nanotubes
title_fullStr Multi-Wavelength Q-Switched Ytterbium-Doped Fiber Laser with Multi-Walled Carbon Nanotubes
title_full_unstemmed Multi-Wavelength Q-Switched Ytterbium-Doped Fiber Laser with Multi-Walled Carbon Nanotubes
title_short Multi-Wavelength Q-Switched Ytterbium-Doped Fiber Laser with Multi-Walled Carbon Nanotubes
title_sort multi wavelength q switched ytterbium doped fiber laser with multi walled carbon nanotubes
topic TK Electrical engineering. Electronics Nuclear engineering
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AT ahmedmahmoudhazzaam multiwavelengthqswitchedytterbiumdopedfiberlaserwithmultiwalledcarbonnanotubes
AT arofhamzah multiwavelengthqswitchedytterbiumdopedfiberlaserwithmultiwalledcarbonnanotubes
AT harunsulaimanwadi multiwavelengthqswitchedytterbiumdopedfiberlaserwithmultiwalledcarbonnanotubes