Erbium-doped fiber ring laser cavity in transient and steady states studied by a numerical approach
An erbium-doped fiber ring laser is modeled by use of the standard propagation and rate equations of a homogeneous, two-level medium. A numerical model is obtained by development of a spectral analysis of erbiumdoped fiber amplifiers. This approach is modified to account for the cyclical propagation...
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my.um.eprints.260132021-09-02T03:09:41Z http://eprints.um.edu.my/26013/ Erbium-doped fiber ring laser cavity in transient and steady states studied by a numerical approach Selvakennedy, Selvadurai Mahdi, Mohd Adzir Abdullah, M.K. Poopalan, Prabakaran Ahmad, Harith QC Physics An erbium-doped fiber ring laser is modeled by use of the standard propagation and rate equations of a homogeneous, two-level medium. A numerical model is obtained by development of a spectral analysis of erbiumdoped fiber amplifiers. This approach is modified to account for the cyclical propagation of the field in the ring laser. Numerical simulations provide interesting information on the spectral behavior as well as important characteristics of the cavity, mainly the lasing wavelength and output power. The model also permits the study of competing modes' gain and signal evolutions during the transient state of the ring laser cavity. © 2000 Optical Society of America. Optical Society of America 2000 Article PeerReviewed Selvakennedy, Selvadurai and Mahdi, Mohd Adzir and Abdullah, M.K. and Poopalan, Prabakaran and Ahmad, Harith (2000) Erbium-doped fiber ring laser cavity in transient and steady states studied by a numerical approach. Journal of the Optical Society of America B, 17 (6). pp. 914-918. ISSN 0740-3224 https://doi.org/10.1364/JOSAB.17.000914 doi:10.1364/JOSAB.17.000914 |
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QC Physics Selvakennedy, Selvadurai Mahdi, Mohd Adzir Abdullah, M.K. Poopalan, Prabakaran Ahmad, Harith Erbium-doped fiber ring laser cavity in transient and steady states studied by a numerical approach |
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An erbium-doped fiber ring laser is modeled by use of the standard propagation and rate equations of a homogeneous, two-level medium. A numerical model is obtained by development of a spectral analysis of erbiumdoped fiber amplifiers. This approach is modified to account for the cyclical propagation of the field in the ring laser. Numerical simulations provide interesting information on the spectral behavior as well as important characteristics of the cavity, mainly the lasing wavelength and output power. The model also permits the study of competing modes' gain and signal evolutions during the transient state of the ring laser cavity. © 2000 Optical Society of America. |
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Article |
author |
Selvakennedy, Selvadurai Mahdi, Mohd Adzir Abdullah, M.K. Poopalan, Prabakaran Ahmad, Harith |
author_facet |
Selvakennedy, Selvadurai Mahdi, Mohd Adzir Abdullah, M.K. Poopalan, Prabakaran Ahmad, Harith |
author_sort |
Selvakennedy, Selvadurai |
title |
Erbium-doped fiber ring laser cavity in transient and steady states studied by a numerical approach |
title_short |
Erbium-doped fiber ring laser cavity in transient and steady states studied by a numerical approach |
title_full |
Erbium-doped fiber ring laser cavity in transient and steady states studied by a numerical approach |
title_fullStr |
Erbium-doped fiber ring laser cavity in transient and steady states studied by a numerical approach |
title_full_unstemmed |
Erbium-doped fiber ring laser cavity in transient and steady states studied by a numerical approach |
title_sort |
erbium-doped fiber ring laser cavity in transient and steady states studied by a numerical approach |
publisher |
Optical Society of America |
publishDate |
2000 |
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http://eprints.um.edu.my/26013/ https://doi.org/10.1364/JOSAB.17.000914 |
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1710675850351869952 |
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13.211869 |