Infrared and Laser Engineering, Volume. 54, Issue 6, 20250033(2025)

Fabrication of large dispersion chirped fiber Bragg grating and its dispersion measurement method research

Yi GAO1,2, Bingfeng LIU1,2, Yumin ZHANG1,2, Qisheng HUANG1,2, and Yanming SONG1,2,3
Author Affiliations
  • 1Key Laboratory of the Ministry of Education for Optoelectronic Measurement Technology and Instrument, Beijing Information Science & Technology University, Beijing 100192, China
  • 2Beijing Laboratory of Optical Fiber Sensing and System, Beijing Information Science & Technology University, Beijing 100016, China
  • 3Guangzhou Nansha Intelligent Photonic Sensing Research Institute, Guangzhou 511462, China
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    References(26)

    [1] OBATA K, CABALLERO-LUCAS F, SUGIOKA K. Material processing at GHz burst mode by femtosecond laser ablation[J]. Journal of Laser Micro Nanoengineering, 16, 19-23(2021).

    [4] ZHOU Hongbing, ZHANG Haoyu, LI Min et al. Progress in active phase control for large-scale coherent laser beam combining[J]. High Power Laser and Particle Beams, 36, 061001(2024).

    [5] WANG Feng, LI Min, YANG Kangming. All-fiber high-energy femtosecond pulse amplification system[J]. Optical Technique, 47, 293-298(2021).

    [11] XU Beibei, XI Lixia, ZHANG Xiaoguang et al. Design and experimental verification of dispersion measurement prototype[J]. Acta Optica Sinica, 39, 0206004(2019).

    [12] AROSA Y, LAGO E L, DE la Fuente R. The phase ambiguity in dispersion measurements by white light spectral interferometry[J]. Optics & Laser Technology, 95, 23-28(2017).

    [13] TERRA O. Chromatic dispersion measurement in optical fibers using optoelectronic oscillations[J]. Optics & Laser Technology, 115, 292-297(2019).

    [14] [14] MA Zhanyu, XU Degang, CHAI Quan, et al. Multiplepass enhanced group delay measurement scheme of FBG based on optical lowcoherence[J]. Journal of Lightwave Technology, 2023, 41(24): 74247431.

    [15] WANG Xu, LI Xiaokang, ZHANG Haojie. Dispersion measurement of chirped fiber Bragg grating based on laser beat frequency[J]. Acta Optica Sinica, 46, 0214001(2017).

    [20] [20] GRÓSZ T, KOVÁCS A P. Higher der dispersion measurement using the stationary phase point method[C]Microstructured Specialty Optical Fibres III. SPIE, 2014, 9128: 139149.

    [22] PIOTR C, ANUPAMAA R, ALEXANDER H et al. Dispersion measurement of ultra-high numerical aperture fibers covering thulium, holmium, and erbium emission wavelengths[J]. Journal of the Optical Society of America B, 35, 1301(2018).

    [25] [25] LES K C, CHEN Guanrong. Kalman Filtering with RealTime Applications [M]. Heidelberg: Springer, 2010.

    [26] HE Renke, CHEN Shuxin, WU Hao et al. Efficient extended cubature Kalman filtering for nonlinear target tracking[J]. International Journal of Systems Science, 52, 392-406(2021).

    [27] [27] YAZDANIAN M, MOJIRI M, SHEIKHOLESLAM F. An extended Kalman filter f identification of biased sinusoidal signals[C]20th Iranian Conference on Electrical Engineering (ICEE2012). IEEE, 2012: 990993.

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    Yi GAO, Bingfeng LIU, Yumin ZHANG, Qisheng HUANG, Yanming SONG. Fabrication of large dispersion chirped fiber Bragg grating and its dispersion measurement method research[J]. Infrared and Laser Engineering, 2025, 54(6): 20250033

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    Paper Information

    Category: 光电材料与器件

    Received: Jan. 4, 2025

    Accepted: Mar. 10, 2025

    Published Online: Jul. 1, 2025

    The Author Email:

    DOI:10.3788/IRLA20250033

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