• Infrared and Laser Engineering
  • Vol. 50, Issue 3, 20200205 (2021)
Sicong Zhao1, Peng Qin2, Dongyu Yan1, Bowen Liu1, Hongrui Wang1, Youjian Song1, Sijia Wang2、*, and Minglie Hu1
Author Affiliations
  • 1Key Laboratory of Opto-electronic Information Science and Technology of Ministry of Education, Ultrafast Laser Laboratory, School of Precision Instruments and Opto-electronics Engineering, Tianjin University, Tianjin 300072, China
  • 2Qian Xuesen Laboratory of Space Technology, China Academy of Space Technology, Beijing 100094, China
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    DOI: 10.3788/IRLA20200205 Cite this Article
    Sicong Zhao, Peng Qin, Dongyu Yan, Bowen Liu, Hongrui Wang, Youjian Song, Sijia Wang, Minglie Hu. Stable mode-locked Yb-fiber laser with a 6 MHz repetition rate tuning range[J]. Infrared and Laser Engineering, 2021, 50(3): 20200205 Copy Citation Text show less
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    [1] K Lee, J Lee, Y S Jang, et al. Fourier-transform spectroscopy using an Er-doped fiber femtosecond laser by sweeping the pulse repetition rate. Sci Rep, 5, 15726(2015).

    [2] Jun Ye. Absolute measurement of a long, arbitrary distance to less than an optical fringe. Opt Lett, 29, 1153-1155(2004).

    [3] S Kray, F Spöler, T Hellerer, et al. Electronically controlled coherent linear optical sampling for optical coherence tomography. Opt Express, 18, 9976-9990(2010).

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    [6] G Villares, A Hugi, S Blaser, et al. Dual-comb spectroscopy based on quantum-cascade-laser frequency combs. Nat Commun, 5, 5192(2014).

    [7] W D Joo, S Kim, J Park, et al. Femtosecond laser pulses for fast 3-D surface profilometry of microelectronic step-structures. Opt Express, 21, 15323-15334(2013).

    [8] T R Schibli, I Hartl, D C Yost, et al. Optical frequency comb with submillihertz linewidth and more than 10 W average power. Nat Photonics, 2, 355-359(2008).

    [9] D D Hudson, K W Holman, R J Jones, et al. Mode-locked fiber laser frequency-controlled with an intracavity electro-optic modulator. Opt Lett, 30, 2948-2950(2005).

    [10] J Park, S Kim, B S Kim, et al. Tuning range extension of pulse repetition rate using chirped fiber Bragg gratings. Opt Express, 25, 1413-1420(2017).

    [11] H Hundertmark, D Kracht, M Engelbrecht, et al. Stable sub-85 fs passively mode-locked Erbium-fiber oscillator with tunable repetition rate. Opt Express, 12, 3178-3183(2004).

    [12] B Washburn, R Fox, N Newbury, et al. Fiber-laser-based frequency comb with a tunable repetition rate. Opt. Express, 12, 4999-5004(2004).

    [13] X J Wu, L J Yang, H Y Zhang, et al. Hybrid mode-locked Er-fiber oscillator with a wide repetition rate stabilization range. Appl Opt, 54, 1681(2015).

    [14] H L Yang, H Y Wei, K Chen, et al. Simply-integrated dual-comb spectrometer via tunable repetition rates and avoiding self-referencing. Opt Express, 25, 8063-8072(2017).

    [15] F W Wise, A Chong, W H Renninger. High-energy femtosecond fiber lasers based on pulse propagation at normal dispersion. Laser & Photon Rev, 2, 58-73(2008).

    CLP Journals

    [1] Menglin Liu, Kun Zhao, Wei Yan, Lisha Wang, Minzhe Liu, Yong Wang, Songsong Sun. 1 015-1 046 nm tunable femtosecond Yb-doped fiber laser[J]. Infrared and Laser Engineering, 2022, 51(6): 20210444

    Sicong Zhao, Peng Qin, Dongyu Yan, Bowen Liu, Hongrui Wang, Youjian Song, Sijia Wang, Minglie Hu. Stable mode-locked Yb-fiber laser with a 6 MHz repetition rate tuning range[J]. Infrared and Laser Engineering, 2021, 50(3): 20200205
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