Switchable multi-wavelength erbium-doped fiber lasers by using cascaded fiber Bragg gratings written in high birefringence fiber

A novel and simple Erbium-doped fiber laser by using cascaded fiber Bragg gratings (FBGs) written in high-birefringence fibers for switchable multi-wavelength operation is proposed. Due to two-peak reflection with orthogonal polarizations of the FBG, the polarization hole-burning effect in the cavit...

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Published inOptics communications Vol. 230; no. 4; pp. 313 - 317
Main Authors Chun-Liu, Zhao, Xiufeng, Yang, Chao, Lu, Hong, Ng Jun, Xin, Guo, Chaudhuri, Partha Roy, Xinyong, Dong
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 01.02.2004
Elsevier Science
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Abstract A novel and simple Erbium-doped fiber laser by using cascaded fiber Bragg gratings (FBGs) written in high-birefringence fibers for switchable multi-wavelength operation is proposed. Due to two-peak reflection with orthogonal polarizations of the FBG, the polarization hole-burning effect in the cavity is greatly enhanced. Experimental results show that the stable dual- and three-wavelength lasing operation with very narrow wavelength separation (∼0.39 nm) can be generated at room temperature. The configuration is simple and flexible. Only by adjusting polarization controllers (PCs), the laser can be switched among the stable single-, dual- and three-wavelength lasing operations.
AbstractList A novel and simple Erbium-doped fiber laser by using cascaded fiber Bragg gratings (FBGs) written in high-birefringence fibers for switchable multi-wavelength operation is proposed. Due to two-peak reflection with orthogonal polarizations of the FBG, the polarization hole-burning effect in the cavity is greatly enhanced. Experimental results show that the stable dual- and three-wavelength lasing operation with very narrow wavelength separation (∼0.39 nm) can be generated at room temperature. The configuration is simple and flexible. Only by adjusting polarization controllers (PCs), the laser can be switched among the stable single-, dual- and three-wavelength lasing operations.
Author Chun-Liu, Zhao
Xiufeng, Yang
Xin, Guo
Hong, Ng Jun
Chaudhuri, Partha Roy
Chao, Lu
Xinyong, Dong
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  givenname: Zhao
  surname: Chun-Liu
  fullname: Chun-Liu, Zhao
  email: zhchunliu@hotmail.com, zhaocl@i2r.a-star.edu.sg
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  givenname: Ng Jun
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  givenname: Partha Roy
  surname: Chaudhuri
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  organization: Lightwave Department, Institute for Infocomm Research, Unit 230, Block 2, Innovation Center, 18 Nanyang Drive, Singapore 637723, Singapore
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  givenname: Dong
  surname: Xinyong
  fullname: Xinyong, Dong
  organization: Network Technological Research Centre, School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore 639798, Singapore
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Issue 4
Keywords High-birefringence fiber
Polarization hole burning
Wavelength switching
Fiber Bragg grating
42.55.w
42.81.−i
Multi-wavelength Erbium-doped fiber laser
Optical fibers
Bragg gratings
Optical switching
Doping
Hole burning
Birefringence
Experimental device
Experimental study
Erbium additions
Fiber lasers
Language English
License CC BY 4.0
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Elsevier Science
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SSID ssj0001438
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Snippet A novel and simple Erbium-doped fiber laser by using cascaded fiber Bragg gratings (FBGs) written in high-birefringence fibers for switchable multi-wavelength...
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pascalfrancis
elsevier
SourceType Aggregation Database
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Publisher
StartPage 313
SubjectTerms Applied sciences
Birefringence, polarization
Circuit properties
Electric, optical and optoelectronic circuits
Electronics
Exact sciences and technology
Fiber Bragg grating
Fiber lasers
Fiber optics
Fundamental areas of phenomenology (including applications)
High-birefringence fiber
Integrated optics. Optical fibers and wave guides
Lasers
Multi-wavelength Erbium-doped fiber laser
Optical and optoelectronic circuits
Optics
Physics
Polarization hole burning
Wavelength switching
Title Switchable multi-wavelength erbium-doped fiber lasers by using cascaded fiber Bragg gratings written in high birefringence fiber
URI https://dx.doi.org/10.1016/j.optcom.2003.11.046
Volume 230
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