Laser Technology, Volume. 47, Issue 3, 301(2023)
Tunable single-wavelength and dual-wavelength ytterbium-doped mode-locked fiber lasers
[1] [1] LI Z, HEIDT A M, SIMAKOV N, et al. Diode-pumped wideband thulium-doped fiber amplifiers for optical communications in the 1800-2050 nm window[J]. Optics Express, 2013, 21(22): 26450-26455.
[2] [2] FU B, GUI L, LI X, et al. Generation of 35 nJ nanosecond pulse from a passively mode-locked Tm, Ho-codoped fiber laser with graphene saturable absorber[J]. IEEE Photonics Technology Letters, 2013, 25(15): 1447-1449.
[3] [3] VOGLER N, HEUKE S, BOCKLITZ T W, et al. Multimodal imaging spectroscopy of tissue[J]. Annual Review of Analytical Chemistry, 2015, 8: 359-387.
[4] [4] FU B, POPA D, ZHAO Z, et al. Wavelength tunable soliton rains in a nanotube-mode locked Tm-doped fiber laser[J]. Applied Physics Letters, 2018, 113(19): 193102.
[5] [5] BEWERSDORF J, HELL S W. Picosecond pulsed two-photon ima- ging with repetition rates of 200 and 400 MHz[J]. Journal of Microscopy, 1998, 191(1): 28-38.
[6] [6] LIN H, GUO C, RUAN S, et al. Tunable and switchable dual-wavelength dissipative soliton operation of a weak-birefringence all-normal-dispersion Yb-doped fiber laser[J]. IEEE Photonics Journal, 2013, 5(5): 1501807.
[7] [7] ZHANG Z X, XU Z W, ZHANG L. Tunable and switchable dual-wavelength dissipative soliton generation in an all-normal-dispersion Yb-doped fiber laser with birefringence fiber filter[J]. Optics Express, 2012, 20(24):26736-26742.
[8] [8] XING L, TONG H T, SAINI T S, et al. Tunable and switchable all-fiber dual-wavelength mode locked laser based on Lyot filtering effect[J]. Optics Express, 2019, 27(10):14635-14647.
[9] [9] REN F, ZHANG J, NIU J, et al. A switchable multi-wavelength EDFL using cascaded Sagnac fiber loops with mode differential delay line[J]. Optik, 2021, 248: 168182.
[10] [10] PENG Y, ZHANG A, PAN H, et al. Tunable and switchable multi-wavelength actively Q-switched fiber laser based on electro-optic modulator and an improved Sagnac filter[J]. Optics & Laser Technology, 2022, 150: 108001.
[11] [11] ZHU K, PEI L, ZHAO Q, et al. Switchable multi-wavelength fiber laser utilizing double Sagnac loop filter[J]. Infrared and Laser Engineering, 2020, 49(11): 20200047(in Chinese).
[13] [13] TIAN J, ZUO Y, HOU M, et al. Magnetic field measurement based on a fiber laser oscillation circuit merged with a polarization-maintaining fiber Sagnac interference structure[J]. Optics Express, 2021, 29(6): 8763-8769.
[14] [14] LI M, ZOU X, WU J, et al. Tunable passively harmonic mode-locked Yb-doped fiber laser with Lyot-Sagnac filter[J]. Applied Optics, 2015, 54(29): 8800-8803.
[15] [15] ZHOU J, YAN P, ZHANG H, et al. All-fiber mode-locked ring laser with a Sagnac filter[J]. IEEE Photonics Technology Letters, 2011, 23(18): 1301-1303.
[16] [16] XING L, TONG H T, SAINI T S, et al. Switchable dual-wavelength mode-locked fiber laser using Saganc loop mirror[J]. Optics Communications, 2020, 463:125457.
[17] [17] LI W, YIN Z, QIU J, et al. Swtichable and tunable multi-wavelength dissipative soliton Yb-doped fiber laser based on tunable Lyot-Sagnac filter[C]//2014 OptoElectronics and Communication Conference and Australian Conference on Optical Fibre Technology. New York,USA:IEEE, 2014: 489-491.
[18] [18] LI T, YAN F, CHENG D, et al. Switchable multi-wavelength thulium-doped fiber laser using a cascaded or two-segment Sagnac loop filter[J]. IEEE Access, 2022, 10: 13026-13037.
[19] [19] ZHAO X, HU G, ZHAO B, et al. Picometer-resolution dual-comb spectroscopy with a free-running fiber laser[J]. Optics Express, 2016, 24(19): 21833-21845.
[20] [20] FELLINGER J, MAYER A S, WINKLER G, et al. Tunable dual-comb from an all-polarization-maintaining single-cavity dual-color Yb∶fiber laser[J]. Optics Express, 2019, 27(20): 28062-28074.
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LIN Jiaqiang, DAI Chuansheng, YAO Peijun, XU Lixin. Tunable single-wavelength and dual-wavelength ytterbium-doped mode-locked fiber lasers[J]. Laser Technology, 2023, 47(3): 301
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Received: Apr. 15, 2022
Accepted: --
Published Online: Dec. 5, 2023
The Author Email: XU Lixin (xulixin@ustc.edu.cn)