Mode-locked fiber laser in the C-band region for dual-wavelength ultrashort pulses emission using a carbon nanotube saturable absorber

Carbon nanotubes; Erbium; Fiber lasers; Fibers; Locks (fasteners); Saturable absorbers; Ultrashort pulses; Yarn; Dual wavelength; Erbium doped fiber laser; Erbium doped fibers; Mode-locking fiber laser; Modelocking; Net gain; Pulse durations; Ultrashort Laser; Mode-locked fiber lasers

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Bibliographic Details
Main Authors: Lau K.Y., Ker P.J., Abas A.F., Alresheedi M.T., Mahdi M.A.
Other Authors: 56903550000
Format: Article
Published: OSA - The Optical Society 2023
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spelling my.uniten.dspace-246552023-05-29T15:25:34Z Mode-locked fiber laser in the C-band region for dual-wavelength ultrashort pulses emission using a carbon nanotube saturable absorber Lau K.Y. Ker P.J. Abas A.F. Alresheedi M.T. Mahdi M.A. 56903550000 37461740800 24482854100 36616904600 7005348074 Carbon nanotubes; Erbium; Fiber lasers; Fibers; Locks (fasteners); Saturable absorbers; Ultrashort pulses; Yarn; Dual wavelength; Erbium doped fiber laser; Erbium doped fibers; Mode-locking fiber laser; Modelocking; Net gain; Pulse durations; Ultrashort Laser; Mode-locked fiber lasers A saturable absorber is commonly employed to generate an ultrashort laser with a mode-locking scheme. In an erbium-doped fiber laser system, the laser regimes of either 1530 or 1550 nm wavelength are procured based on the absorption profile of the erbium-doped fiber. The absorption of the erbium-doped fiber is designed to emit at both wavelengths by controlling the net gain of the laser cavity. Subsequently, simultaneous erbium-doped fiber laser emission is attained at 1533.5 and 1555.1 nm with the pulse duration of 910 and 850 fs, respectively. Therefore, this work maximizes the output portfolios of a mode-locking fiber laser for dual-wavelength ultrashort pulses emission. � 2019 Chinese Optics Letters. Final 2023-05-29T07:25:33Z 2023-05-29T07:25:33Z 2019 Article 10.3788/COL201917.051401 2-s2.0-85069844776 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85069844776&doi=10.3788%2fCOL201917.051401&partnerID=40&md5=113a2aa1d287fa3e41f50a738efb8c79 https://irepository.uniten.edu.my/handle/123456789/24655 17 5 51401 All Open Access, Green OSA - The Optical Society Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Carbon nanotubes; Erbium; Fiber lasers; Fibers; Locks (fasteners); Saturable absorbers; Ultrashort pulses; Yarn; Dual wavelength; Erbium doped fiber laser; Erbium doped fibers; Mode-locking fiber laser; Modelocking; Net gain; Pulse durations; Ultrashort Laser; Mode-locked fiber lasers
author2 56903550000
author_facet 56903550000
Lau K.Y.
Ker P.J.
Abas A.F.
Alresheedi M.T.
Mahdi M.A.
format Article
author Lau K.Y.
Ker P.J.
Abas A.F.
Alresheedi M.T.
Mahdi M.A.
spellingShingle Lau K.Y.
Ker P.J.
Abas A.F.
Alresheedi M.T.
Mahdi M.A.
Mode-locked fiber laser in the C-band region for dual-wavelength ultrashort pulses emission using a carbon nanotube saturable absorber
author_sort Lau K.Y.
title Mode-locked fiber laser in the C-band region for dual-wavelength ultrashort pulses emission using a carbon nanotube saturable absorber
title_short Mode-locked fiber laser in the C-band region for dual-wavelength ultrashort pulses emission using a carbon nanotube saturable absorber
title_full Mode-locked fiber laser in the C-band region for dual-wavelength ultrashort pulses emission using a carbon nanotube saturable absorber
title_fullStr Mode-locked fiber laser in the C-band region for dual-wavelength ultrashort pulses emission using a carbon nanotube saturable absorber
title_full_unstemmed Mode-locked fiber laser in the C-band region for dual-wavelength ultrashort pulses emission using a carbon nanotube saturable absorber
title_sort mode-locked fiber laser in the c-band region for dual-wavelength ultrashort pulses emission using a carbon nanotube saturable absorber
publisher OSA - The Optical Society
publishDate 2023
_version_ 1806428099724705792
score 13.214268