Mode-locked thulium ytterbium co-doped fiber laser with graphene oxide paper saturable absorber

A mode-locked thulium ytterbium co-doped fiber laser (TYDFL) is proposed and demonstrated by using a commercial graphene oxide (GO) paper as saturable absorber (SA). The GO paper is sandwiched between two fiber ferrules and incorporates a ring laser cavity to generate soliton pulse train operating a...

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Main Authors: Azooz, S.M., Harun, Sulaiman Wadi, Ahmad, Harith, Halder, A., Paul, Mukul Chandra, Pal, M., Bhadra, S.K.
格式: 文件
语言:English
出版: 2015
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在线阅读:http://eprints.um.edu.my/13863/1/Mode-Locked_Thulium_Ytterbium_Co-Doped_Fiber_Laser.pdf
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author Azooz, S.M.
Harun, Sulaiman Wadi
Ahmad, Harith
Halder, A.
Paul, Mukul Chandra
Pal, M.
Bhadra, S.K.
author_facet Azooz, S.M.
Harun, Sulaiman Wadi
Ahmad, Harith
Halder, A.
Paul, Mukul Chandra
Pal, M.
Bhadra, S.K.
author_sort Azooz, S.M.
collection UM
description A mode-locked thulium ytterbium co-doped fiber laser (TYDFL) is proposed and demonstrated by using a commercial graphene oxide (GO) paper as saturable absorber (SA). The GO paper is sandwiched between two fiber ferrules and incorporates a ring laser cavity to generate soliton pulse train operating at 1942.0 nm at a threshold multimode pump power as low as 1.8 W. The mode-locked TYDFL has a repetition rate of 22.32 MHz and the calculated pulse width of 1.1 ns. Even though the SA has a low damage threshold, the easy fabrication of GO paper should promote its potential application in ultrafast photonics.
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spelling um.eprints-138632018-10-11T03:04:18Z http://eprints.um.edu.my/13863/ Mode-locked thulium ytterbium co-doped fiber laser with graphene oxide paper saturable absorber Azooz, S.M. Harun, Sulaiman Wadi Ahmad, Harith Halder, A. Paul, Mukul Chandra Pal, M. Bhadra, S.K. T Technology (General) TK Electrical engineering. Electronics Nuclear engineering A mode-locked thulium ytterbium co-doped fiber laser (TYDFL) is proposed and demonstrated by using a commercial graphene oxide (GO) paper as saturable absorber (SA). The GO paper is sandwiched between two fiber ferrules and incorporates a ring laser cavity to generate soliton pulse train operating at 1942.0 nm at a threshold multimode pump power as low as 1.8 W. The mode-locked TYDFL has a repetition rate of 22.32 MHz and the calculated pulse width of 1.1 ns. Even though the SA has a low damage threshold, the easy fabrication of GO paper should promote its potential application in ultrafast photonics. 2015-01 Article PeerReviewed application/pdf en http://eprints.um.edu.my/13863/1/Mode-Locked_Thulium_Ytterbium_Co-Doped_Fiber_Laser.pdf Azooz, S.M. and Harun, Sulaiman Wadi and Ahmad, Harith and Halder, A. and Paul, Mukul Chandra and Pal, M. and Bhadra, S.K. (2015) Mode-locked thulium ytterbium co-doped fiber laser with graphene oxide paper saturable absorber. Chinese Physics Letters, 32 (1). ISSN 0256-307X, DOI https://doi.org/10.1088/0256-307x/32/1/014204 <https://doi.org/10.1088/0256-307x/32/1/014204>. http://iopscience.iop.org/0256-307X/32/1/014204 Doi 10.1088/0256-307x/32/1/014204
spellingShingle T Technology (General)
TK Electrical engineering. Electronics Nuclear engineering
Azooz, S.M.
Harun, Sulaiman Wadi
Ahmad, Harith
Halder, A.
Paul, Mukul Chandra
Pal, M.
Bhadra, S.K.
Mode-locked thulium ytterbium co-doped fiber laser with graphene oxide paper saturable absorber
title Mode-locked thulium ytterbium co-doped fiber laser with graphene oxide paper saturable absorber
title_full Mode-locked thulium ytterbium co-doped fiber laser with graphene oxide paper saturable absorber
title_fullStr Mode-locked thulium ytterbium co-doped fiber laser with graphene oxide paper saturable absorber
title_full_unstemmed Mode-locked thulium ytterbium co-doped fiber laser with graphene oxide paper saturable absorber
title_short Mode-locked thulium ytterbium co-doped fiber laser with graphene oxide paper saturable absorber
title_sort mode locked thulium ytterbium co doped fiber laser with graphene oxide paper saturable absorber
topic T Technology (General)
TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.um.edu.my/13863/1/Mode-Locked_Thulium_Ytterbium_Co-Doped_Fiber_Laser.pdf
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