L-band Brillouin-Erbium fiber laser pumped with 1480 nm pumping scheme in a linear cavity

In this paper, a multiwavelength linear-cavity Brillouin-Erbium fiber laser pumped by a 1480 nm pump laser is demonstrated to operate in the L-band region. The issue of low gain efficiency of L-band in Erbium-doped fiber pumped with 980 nm pump lasers is resolved with this pumping scheme. The amount...

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Main Authors: Al-Mansoori, Mohammed Hayder, Naji, A. W., Iqbal, S. J., Abdullah, Mohammad Khazani, Mahdi, M. A.
Format: Article
Published: IOP Publishing 2007
Subjects:
Online Access:http://shdl.mmu.edu.my/3060/
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author Al-Mansoori, Mohammed Hayder
Naji, A. W.
Iqbal, S. J.
Abdullah, Mohammad Khazani
Mahdi, M. A.
author_facet Al-Mansoori, Mohammed Hayder
Naji, A. W.
Iqbal, S. J.
Abdullah, Mohammad Khazani
Mahdi, M. A.
author_sort Al-Mansoori, Mohammed Hayder
building MMU Institutional Repository
collection Online Access
description In this paper, a multiwavelength linear-cavity Brillouin-Erbium fiber laser pumped by a 1480 nm pump laser is demonstrated to operate in the L-band region. The issue of low gain efficiency of L-band in Erbium-doped fiber pumped with 980 nm pump lasers is resolved with this pumping scheme. The amount of 1480 nm pump power to produce the first Brillouin Stokes line oscillating in the cavity is 23.4 mW only. The proposed laser configuration has a wide tuning range of 16 nm from 1591 to 1607 nm with six Brillouin Stokes lines within this tuning range. The maximum number of 23 Brillouin Stokes lines with a spacing of 0.089 nm is achieved by setting the Brillouin pump wavelength at 1595.5 nm and its power is set at 3.2 mW.
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publishDate 2007
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spelling mmu-30602021-08-23T16:10:46Z http://shdl.mmu.edu.my/3060/ L-band Brillouin-Erbium fiber laser pumped with 1480 nm pumping scheme in a linear cavity Al-Mansoori, Mohammed Hayder Naji, A. W. Iqbal, S. J. Abdullah, Mohammad Khazani Mahdi, M. A. T Technology (General) QA75.5-76.95 Electronic computers. Computer science In this paper, a multiwavelength linear-cavity Brillouin-Erbium fiber laser pumped by a 1480 nm pump laser is demonstrated to operate in the L-band region. The issue of low gain efficiency of L-band in Erbium-doped fiber pumped with 980 nm pump lasers is resolved with this pumping scheme. The amount of 1480 nm pump power to produce the first Brillouin Stokes line oscillating in the cavity is 23.4 mW only. The proposed laser configuration has a wide tuning range of 16 nm from 1591 to 1607 nm with six Brillouin Stokes lines within this tuning range. The maximum number of 23 Brillouin Stokes lines with a spacing of 0.089 nm is achieved by setting the Brillouin pump wavelength at 1595.5 nm and its power is set at 3.2 mW. IOP Publishing 2007-05 Article NonPeerReviewed Al-Mansoori, Mohammed Hayder and Naji, A. W. and Iqbal, S. J. and Abdullah, Mohammad Khazani and Mahdi, M. A. (2007) L-band Brillouin-Erbium fiber laser pumped with 1480 nm pumping scheme in a linear cavity. Laser Physics Letters, 4 (5). pp. 371-375. ISSN 1612-2011 http://dx.doi.org/10.1002/lapl.200610116 doi:10.1002/lapl.200610116 doi:10.1002/lapl.200610116
spellingShingle T Technology (General)
QA75.5-76.95 Electronic computers. Computer science
Al-Mansoori, Mohammed Hayder
Naji, A. W.
Iqbal, S. J.
Abdullah, Mohammad Khazani
Mahdi, M. A.
L-band Brillouin-Erbium fiber laser pumped with 1480 nm pumping scheme in a linear cavity
title L-band Brillouin-Erbium fiber laser pumped with 1480 nm pumping scheme in a linear cavity
title_full L-band Brillouin-Erbium fiber laser pumped with 1480 nm pumping scheme in a linear cavity
title_fullStr L-band Brillouin-Erbium fiber laser pumped with 1480 nm pumping scheme in a linear cavity
title_full_unstemmed L-band Brillouin-Erbium fiber laser pumped with 1480 nm pumping scheme in a linear cavity
title_short L-band Brillouin-Erbium fiber laser pumped with 1480 nm pumping scheme in a linear cavity
title_sort l-band brillouin-erbium fiber laser pumped with 1480 nm pumping scheme in a linear cavity
topic T Technology (General)
QA75.5-76.95 Electronic computers. Computer science
url http://shdl.mmu.edu.my/3060/
http://shdl.mmu.edu.my/3060/
http://shdl.mmu.edu.my/3060/