Ti3AlC2 coated D-shaped fiber saturable absorber for Q-switched pulse generation

In this letter, a titanium aluminum carbide (Ti3AlC2) coated D-shaped fiber is proposed and demonstrated as a new saturable absorber (SA) for Q-switched laser pulse generation. In preparing the SA, the Ti3AlC2 powder is dispersed in liquid polyvinyl alcohol (PVA) before the solution is dropped and l...

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Published in:Optoelectronics Letters
Main Author: Omar S.; Azooz S.M.; Rosol A.H.A.; Jusoh Z.; Musa B.; Harun S.W.
Format: Article
Language:English
Published: Springer Verlag 2022
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85137562648&doi=10.1007%2fs11801-022-2023-8&partnerID=40&md5=734d000f6288065435b42b74ad9002c1
id 2-s2.0-85137562648
spelling 2-s2.0-85137562648
Omar S.; Azooz S.M.; Rosol A.H.A.; Jusoh Z.; Musa B.; Harun S.W.
Ti3AlC2 coated D-shaped fiber saturable absorber for Q-switched pulse generation
2022
Optoelectronics Letters
18
8
10.1007/s11801-022-2023-8
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85137562648&doi=10.1007%2fs11801-022-2023-8&partnerID=40&md5=734d000f6288065435b42b74ad9002c1
In this letter, a titanium aluminum carbide (Ti3AlC2) coated D-shaped fiber is proposed and demonstrated as a new saturable absorber (SA) for Q-switched laser pulse generation. In preparing the SA, the Ti3AlC2 powder is dispersed in liquid polyvinyl alcohol (PVA) before the solution is dropped and left to dry onto a polished surface of D-shape fiber. The SA is added to an erbium-doped fiber laser (EDFL) cavity to modulate the cavity loss for Q-switching. The Q-switched laser is obtained at 1 561 nm. The pulse width of the pulses can be varied between 7.4 µs and 5.1 µs with a corresponding repetition rate range from 41.26 kHz to 54.35 kHz, when the pump power is increased from 42.2 mW to 71.5 mW. At 71.5 mW pump, the pulse energy is obtained at 70.3 nJ. The signal-to-noise ratio (SNR) of the fundamental frequency is recorded at 67 dB, which indicates the stability of the laser. © 2022, Tianjin University of Technology.
Springer Verlag
16731905
English
Article

author Omar S.; Azooz S.M.; Rosol A.H.A.; Jusoh Z.; Musa B.; Harun S.W.
spellingShingle Omar S.; Azooz S.M.; Rosol A.H.A.; Jusoh Z.; Musa B.; Harun S.W.
Ti3AlC2 coated D-shaped fiber saturable absorber for Q-switched pulse generation
author_facet Omar S.; Azooz S.M.; Rosol A.H.A.; Jusoh Z.; Musa B.; Harun S.W.
author_sort Omar S.; Azooz S.M.; Rosol A.H.A.; Jusoh Z.; Musa B.; Harun S.W.
title Ti3AlC2 coated D-shaped fiber saturable absorber for Q-switched pulse generation
title_short Ti3AlC2 coated D-shaped fiber saturable absorber for Q-switched pulse generation
title_full Ti3AlC2 coated D-shaped fiber saturable absorber for Q-switched pulse generation
title_fullStr Ti3AlC2 coated D-shaped fiber saturable absorber for Q-switched pulse generation
title_full_unstemmed Ti3AlC2 coated D-shaped fiber saturable absorber for Q-switched pulse generation
title_sort Ti3AlC2 coated D-shaped fiber saturable absorber for Q-switched pulse generation
publishDate 2022
container_title Optoelectronics Letters
container_volume 18
container_issue 8
doi_str_mv 10.1007/s11801-022-2023-8
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85137562648&doi=10.1007%2fs11801-022-2023-8&partnerID=40&md5=734d000f6288065435b42b74ad9002c1
description In this letter, a titanium aluminum carbide (Ti3AlC2) coated D-shaped fiber is proposed and demonstrated as a new saturable absorber (SA) for Q-switched laser pulse generation. In preparing the SA, the Ti3AlC2 powder is dispersed in liquid polyvinyl alcohol (PVA) before the solution is dropped and left to dry onto a polished surface of D-shape fiber. The SA is added to an erbium-doped fiber laser (EDFL) cavity to modulate the cavity loss for Q-switching. The Q-switched laser is obtained at 1 561 nm. The pulse width of the pulses can be varied between 7.4 µs and 5.1 µs with a corresponding repetition rate range from 41.26 kHz to 54.35 kHz, when the pump power is increased from 42.2 mW to 71.5 mW. At 71.5 mW pump, the pulse energy is obtained at 70.3 nJ. The signal-to-noise ratio (SNR) of the fundamental frequency is recorded at 67 dB, which indicates the stability of the laser. © 2022, Tianjin University of Technology.
publisher Springer Verlag
issn 16731905
language English
format Article
accesstype
record_format scopus
collection Scopus
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