Line Position-Dependent Effect in Line-by-Line Inscribed Fiber Bragg Gratings
Line-by-line direct writing by femtosecond laser has been proved to be a simple and effective method for the fabrication of low-loss fiber Bragg gratings (FBGs), and is more flexible compared with the traditional ultraviolet exposure method. In this paper, the line-position-dependent characteristics...
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Published in | Sensors (Basel, Switzerland) Vol. 21; no. 21; p. 7231 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Abstract | Line-by-line direct writing by femtosecond laser has been proved to be a simple and effective method for the fabrication of low-loss fiber Bragg gratings (FBGs), and is more flexible compared with the traditional ultraviolet exposure method. In this paper, the line-position-dependent characteristics of cladding modes coupling in line-by-line FBGs have been studied, to the best of our knowledge, for the first time. Both theoretical and experimental results show that off-center inscribing could compress the bandwidth of the Bragg resonance and excite more abundant cladding mode coupling, in which the core-guided fundamental mode would couple to the cladding-guided LP0n and LP1n simultaneously. By aligning the line positions across the core region, the first apodized line-by-line FBG was achieved. This work enriches the theories of line-by-line FBGs and provides an inscription guidance to meet different application requirements. |
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AbstractList | Line-by-line direct writing by femtosecond laser has been proved to be a simple and effective method for the fabrication of low-loss fiber Bragg gratings (FBGs), and is more flexible compared with the traditional ultraviolet exposure method. In this paper, the line-position-dependent characteristics of cladding modes coupling in line-by-line FBGs have been studied, to the best of our knowledge, for the first time. Both theoretical and experimental results show that off-center inscribing could compress the bandwidth of the Bragg resonance and excite more abundant cladding mode coupling, in which the core-guided fundamental mode would couple to the cladding-guided LP0n and LP1n simultaneously. By aligning the line positions across the core region, the first apodized line-by-line FBG was achieved. This work enriches the theories of line-by-line FBGs and provides an inscription guidance to meet different application requirements. |
Author | Wu, Baiyi Rao, Binyu Li, Hongye Wang, Meng Zhao, Xiaofan Wang, Zefeng |
AuthorAffiliation | 3 Hunan Provincial Key Laboratory of High Energy Laser Technology, Changsha 410073, China 2 State Key Laboratory of Pulsed Power Laser Technology, Changsha 410073, China 1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China; lihongye@nudt.edu.cn (H.L.); zhaoxiaofan_zxf@nudt.edu.cn (X.Z.); raobinyu@nudt.edu.cn (B.R.); wangmeng@nudt.edu.cn (M.W.); wubaiyi@nudt.edu.cn (B.W.) |
AuthorAffiliation_xml | – name: 1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China; lihongye@nudt.edu.cn (H.L.); zhaoxiaofan_zxf@nudt.edu.cn (X.Z.); raobinyu@nudt.edu.cn (B.R.); wangmeng@nudt.edu.cn (M.W.); wubaiyi@nudt.edu.cn (B.W.) – name: 3 Hunan Provincial Key Laboratory of High Energy Laser Technology, Changsha 410073, China – name: 2 State Key Laboratory of Pulsed Power Laser Technology, Changsha 410073, China |
Author_xml | – sequence: 1 givenname: Hongye surname: Li fullname: Li, Hongye – sequence: 2 givenname: Xiaofan surname: Zhao fullname: Zhao, Xiaofan – sequence: 3 givenname: Binyu surname: Rao fullname: Rao, Binyu – sequence: 4 givenname: Meng surname: Wang fullname: Wang, Meng – sequence: 5 givenname: Baiyi surname: Wu fullname: Wu, Baiyi – sequence: 6 givenname: Zefeng surname: Wang fullname: Wang, Zefeng |
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SubjectTerms | apodization Bandwidths Bragg gratings Cladding cladding mode Communication Coupled modes Direct laser writing Experiments femtosecond laser fiber Bragg gratings Inscriptions Lasers Spectrum allocation Writing |
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Title | Line Position-Dependent Effect in Line-by-Line Inscribed Fiber Bragg Gratings |
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