• Photonics Research
  • Vol. 7, Issue 2, 103 (2019)
Jianfeng Li1、*, Yazhou Wang1, Hongyu Luo1, Yong Liu1, Zhijun Yan2、4, Zhongyuan Sun3, and Lin Zhang3、5
Author Affiliations
  • 1State Key Laboratory of Electronic Thin Films and Integrated Devices, School of Optoelectronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 610054, China
  • 2School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, China
  • 3Aston Institute of Photonic Technologies (AiPT), Aston University, Birmingham B4 7ET, UK
  • 4e-mail: yanzhijin@gmail.com
  • 5e-mail: l.zhang@aston.ac.uk
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    DOI: 10.1364/PRJ.7.000103 Cite this Article Set citation alerts
    Jianfeng Li, Yazhou Wang, Hongyu Luo, Yong Liu, Zhijun Yan, Zhongyuan Sun, Lin Zhang. Kelly sideband suppression and wavelength tuning of a conventional soliton in a Tm-doped hybrid mode-locked fiber laser with an all-fiber Lyot filter[J]. Photonics Research, 2019, 7(2): 103 Copy Citation Text show less
    References

    [1] J. Bogusławski, G. Soboń, R. Zybała, K. Mars, A. Mikuła, K. M. Abramski, J. Sotor. Investigation on pulse shaping in fiber laser hybrid mode-locked by Sb2Te3 saturable absorber. Opt. Express, 23, 29014-29023(2015).

    [2] Z. Sun, T. Hasan, F. Wang, A. G. Rozhin, I. H. White, A. C. Ferrari. Ultrafast stretched-pulse fiber laser mode-locked by carbon nanotubes. Nano Res., 3, 404-411(2010).

    [3] Z. Sun, D. Popa, T. Hasan, F. Torrisi, F. Wang, E. J. R. Kelleher, J. C. Travers, V. Nicolosi, A. C. Ferrari. A stable, wideband tunable, near transform-limited, graphene-mode-locked, ultrafast laser. Nano Res., 3, 653-660(2010).

    [4] C. Zhao, Y. Zou, Y. Chen, Z. Wang, S. Lu, H. Zhang, S. Wen, D. Tang. Wavelength-tunable picosecond soliton fiber laser with topological insulator: Bi2Se3 as a mode locker. Opt. Express, 20, 27888-27895(2012).

    [5] J. Sotor, G. Sobon, M. Kowalczyk, W. Macherzynski, P. Paletko, K. M. Abramski. Ultrafast thulium-doped fiber laser mode locked with black phosphorus. Opt. Lett., 40, 3885-3888(2015).

    [6] H. Haus. Theory of mode locking with a slow saturable absorber. IEEE J. Quantum Electron., 11, 736-746(1975).

    [7] F. X. Kurtner, J. A. der Au, U. Keller. Mode-locking with slow and fast saturable absorbers-what’s the difference?. IEEE J. Sel. Top. Quantum, 4, 159-168(1998).

    [8] B. Farrow, P. V. Kamat. CdSe quantum dot sensitized solar cells. Shuttling electrons through stacked carbon nanocups. J. Am. Chem. Soc., 131, 11124-11131(2009).

    [9] M. E. Fermann, I. Hartl. Ultrafast fiber laser technology. IEEE J. Sel. Top. Quantum, 15, 191-206(2009).

    [10] L. E. Nelson, D. J. Jones, K. Tamura, H. A. Haus, E. P. Ippen. Ultrashort-pulse fiber ring lasers. Appl. Phys. B, 65, 277-294(1997).

    [11] M. Guina, N. Xiang, A. Vainionpää, O. G. Okhotnikov, T. Sajavaara, J. Keinonen. Self-starting stretched-pulse fiber laser mode locked and stabilized with slow and fast semiconductor saturable absorbers. Opt. Lett., 26, 1809-1811(2001).

    [12] S. Kim, Y. Kim, J. Park, S. Han, S. Park, Y. J. Kim, S. W. Kim. Hybrid mode-locked Er-doped fiber femtosecond oscillator with 156 mW output power. Opt. Express, 20, 15054-15060(2012).

    [13] Q. Wang, J. Geng, T. Luo, S. Jiang. 2 μm mode-locked fiber laser. Proc. SPIE, 8237, 82371N(2012).

    [14] S. Kelly. Characteristic sideband instability of periodically amplified average soliton. Electron. Lett., 28, 806-807(1992).

    [15] J. Li, Z. Yan, Z. Sun, H. Luo, Y. He, Z. Li, Y. Liu, L. Zhang. Thulium-doped all-fiber mode-locked laser based on NPR and 45°-tilted fiber grating. Opt. Express, 22, 31020-31028(2014).

    [16] R. Weill, A. Bekker, V. Smulakovsky, B. Fischer, O. Gat. Spectral sidebands and multipulse formation in passively mode-locked lasers. Phys. Rev. A, 83, 043831(2011).

    [17] M. L. Dennis, I. N. Duling. Experimental study of sideband generation in femtosecond fiber lasers. IEEE J. Quantum Electron., 30, 1469-1477(1994).

    [18] C. W. Rudy, K. E. Urbanek, M. J. F. Digonnet, R. L. Byer. Amplified 2-μm thulium-doped all-fiber mode-locked figure-eight laser. J. Lightwave Technol., 31, 1809-1812(2013).

    [19] M. E. Fermann, M. J. Andrejco, M. L. Stock, Y. Silberberg, A. M. Weiner. Passive mode locking in erbium fiber lasers with negative group delay. Appl. Phys. Lett., 62, 910-912(1993).

    [20] M. Nakazawa, E. Yoshida, T. Sugawa, Y. Kimura. Continuum suppressed, uniformly repetitive 136 fs pulse generation from an erbium-doped fibre laser with nonlinear polarisation rotation. Electron. Lett., 29, 1327-1329(1993).

    [21] M. J. Guy, D. U. Noske, J. R. Taylor. Generation of femtosecond soliton pulses by passive mode locking of an ytterbium-erbium figure-of-eight fiber laser. Opt. Lett., 18, 1447-1449(1993).

    [22] D. U. Noske, J. R. Taylor. Spectral and temporal stabilisation of a diode-pumped ytterbium-erbium fibre soliton laser. Electron. Lett., 29, 2200-2202(1993).

    [23] K. Tamura, C. R. Doerr, H. A. Haus, E. P. Ippen. Soliton fiber ring laser stabilization and tuning with a broad intracavity filter. IEEE Photon. Technol. Lett., 6, 697-699(1994).

    [24] L. Yun, X. Liu, D. Mao. Observation of dual-wavelength dissipative solitons in a figure-eight erbium-doped fiber laser. Opt. Express, 20, 20992-20997(2012).

    [25] S. Huang, Y. Wang, P. Yan, J. Zhao, H. Li, R. Lin. Tunable and switchable multi-wavelength dissipative soliton generation in a graphene oxide mode-locked Yb-doped fiber laser. Opt. Express, 22, 11417-11426(2014).

    [26] K. Kieu, M. Mansuripur. Tuning of fiber lasers by use of a single-mode biconic fiber taper. Opt. Lett., 31, 2435-2437(2006).

    [27] Y. Wang, J. Li, B. Zhai, Y. Hu, K. Mo, R. Lu, Y. Liu. Tunable and switchable dual-wavelength mode-locked Tm3+-doped fiber laser based on a fiber taper. Opt. Express, 24, 15299-15306(2016).

    [28] X. Liu, D. Han, Z. Sun, C. Zeng, H. Lu, D. Mao, Y. Cui, F. Wang. Versatile multi-wavelength ultrafast fiber laser mode-locked by carbon nanotubes. Sci. Rep., 3, 2718(2013).

    [29] Z. Yan, C. Mou, H. Wang, K. Zhou, Y. Wang, W. Zhao, L. Zhang. All-fiber polarization interference filters based on 45°-tilted fiber gratings. Opt. Lett., 37, 353-355(2012).

    [30] Z. Yan, H. Wang, K. Zhou, Y. Wang, W. Zhao, L. Zhang. Broadband tunable all-fiber polarization interference filter based on 45° tilted fiber gratings. J. Lightwave Technol., 31, 94-98(2013).

    [31] Z. Yan, H. Wang, K. Zhou, Y. Wang, C. Li, W. Zhao, L. Zhang. Soliton mode locking fiber laser with an all-fiber polarization interference filter. Opt. Lett., 37, 4522-4524(2012).

    [32] K. Özgören, F. Ö. Ilday. All-fiber all-normal dispersion laser with a fiber-based Lyot filter. Opt. Lett., 35, 1296-1298(2010).

    CLP Journals

    [1] Hualong Chen, Xiantao Jiang, Shixiang Xu, Han Zhang. Recent progress in multi-wavelength fiber lasers: principles, status, and challenges[J]. Chinese Optics Letters, 2020, 18(4): 041405

    [2] Jakub Bogusławski, Grzegorz Soboń, Rafał Zybała, Jarosław Sotor. Towards an optimum saturable absorber for the multi-gigahertz harmonic mode locking of fiber lasers[J]. Photonics Research, 2019, 7(9): 1094

    Jianfeng Li, Yazhou Wang, Hongyu Luo, Yong Liu, Zhijun Yan, Zhongyuan Sun, Lin Zhang. Kelly sideband suppression and wavelength tuning of a conventional soliton in a Tm-doped hybrid mode-locked fiber laser with an all-fiber Lyot filter[J]. Photonics Research, 2019, 7(2): 103
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