Switchable generation of dual-wavelength homogeneous and heterogeneous pulse patterns in a double-cavity fiber laser

•A fiber laser with double gain cavities is originally built for constructing joint filtering functions.•Bidirectional switching between dual-wavelength homogeneous and heterogeneous pulse patterns can be experimentally realized by adjusting the polarization bias.•The switchable generation of dual-w...

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Published in:Infrared physics & technology Vol. 121; p. 104042
Main Authors: Gu, Lin, Cui, Zhengwei, Shu, Yiqing, Li, Mengxian, Li, Jianqing, Luo, Aiping, Chen, Weicheng
Format: Journal Article
Language:English
Published: Elsevier B.V 01-03-2022
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Abstract •A fiber laser with double gain cavities is originally built for constructing joint filtering functions.•Bidirectional switching between dual-wavelength homogeneous and heterogeneous pulse patterns can be experimentally realized by adjusting the polarization bias.•The switchable generation of dual-wavelength homogeneous and heterogeneous pulse patterns is proved by theoretical and experimental analyses to be due to the joint filtering functions induced by the two gain cavities of the fiber laser. We report the experimental generation of dual-wavelength homogeneous and heterogeneous pulse patterns in a double-cavity fiber laser. The double-cavity fiber laser is characterized by a 5-cm Fabry–Perót (F–P) gain minicavity incorporating into a 207-m ring cavity for constructing joint filtering effects to achieve dual-wavelength pulses. The homogeneous pattern is a superposition state of dual-wavelength discrete solitons, while the heterogeneous pattern is the coexistence of one noise-like pulse (NLP) and one soliton with wavelengths centered at 1559 nm and 1565.8 nm. Bidirectional switching between these two pulse patterns can be realized by adjusting the polarization bias. The switchable generation of dual-wavelength homogeneous and heterogeneous pulse patterns is proved by theoretical and experimental analyses to be due to joint filtering effects induced by the two gain cavities. Our work can provide a new method for achieving controllable complex pulse patterns.
AbstractList •A fiber laser with double gain cavities is originally built for constructing joint filtering functions.•Bidirectional switching between dual-wavelength homogeneous and heterogeneous pulse patterns can be experimentally realized by adjusting the polarization bias.•The switchable generation of dual-wavelength homogeneous and heterogeneous pulse patterns is proved by theoretical and experimental analyses to be due to the joint filtering functions induced by the two gain cavities of the fiber laser. We report the experimental generation of dual-wavelength homogeneous and heterogeneous pulse patterns in a double-cavity fiber laser. The double-cavity fiber laser is characterized by a 5-cm Fabry–Perót (F–P) gain minicavity incorporating into a 207-m ring cavity for constructing joint filtering effects to achieve dual-wavelength pulses. The homogeneous pattern is a superposition state of dual-wavelength discrete solitons, while the heterogeneous pattern is the coexistence of one noise-like pulse (NLP) and one soliton with wavelengths centered at 1559 nm and 1565.8 nm. Bidirectional switching between these two pulse patterns can be realized by adjusting the polarization bias. The switchable generation of dual-wavelength homogeneous and heterogeneous pulse patterns is proved by theoretical and experimental analyses to be due to joint filtering effects induced by the two gain cavities. Our work can provide a new method for achieving controllable complex pulse patterns.
ArticleNumber 104042
Author Li, Mengxian
Luo, Aiping
Gu, Lin
Li, Jianqing
Cui, Zhengwei
Chen, Weicheng
Shu, Yiqing
Author_xml – sequence: 1
  givenname: Lin
  surname: Gu
  fullname: Gu, Lin
  organization: Guangdong-Hong Kong-Macao Joint Laboratory for Intelligent Micro-Nano Optoelectronic Technology, Foshan University, Foshan 528000, China
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  givenname: Zhengwei
  surname: Cui
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  givenname: Yiqing
  surname: Shu
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  givenname: Mengxian
  surname: Li
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  organization: Guangdong-Hong Kong-Macao Joint Laboratory for Intelligent Micro-Nano Optoelectronic Technology, Foshan University, Foshan 528000, China
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  organization: Faculty of Information Technology, Macau University of Science and Technology, 519020, Macau
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  givenname: Aiping
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  organization: Guangdong Provincial Key Laboratory of Nanophotonic Functional Materials and Devices, South China Normal University, Guangzhou 510006, China
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  givenname: Weicheng
  surname: Chen
  fullname: Chen, Weicheng
  email: chenwch@fosu.edu.cn
  organization: Guangdong-Hong Kong-Macao Joint Laboratory for Intelligent Micro-Nano Optoelectronic Technology, Foshan University, Foshan 528000, China
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CitedBy_id crossref_primary_10_1016_j_ijleo_2022_170322
crossref_primary_10_1103_PhysRevA_109_033513
crossref_primary_10_3788_COL202422_051403
crossref_primary_10_1016_j_optlastec_2022_108659
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Keywords Fiber laser
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Dual-wavelength pulses
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Snippet •A fiber laser with double gain cavities is originally built for constructing joint filtering functions.•Bidirectional switching between dual-wavelength...
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StartPage 104042
SubjectTerms Dual-wavelength pulses
Fiber laser
Filtering effect
Title Switchable generation of dual-wavelength homogeneous and heterogeneous pulse patterns in a double-cavity fiber laser
URI https://dx.doi.org/10.1016/j.infrared.2022.104042
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