• Photonics Research
  • Vol. 11, Issue 2, 159 (2023)
Sicheng Li1, Jiangming Xu1、2、*, Junrui Liang1, Jun Ye1, Yang Zhang1, Xiaoya Ma1, Jinyong Leng1, and Pu Zhou1、3、*
Author Affiliations
  • 1College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China
  • 2e-mail: jmxu1988@163.com
  • 3e-mail: zhoupu203@163.com
  • show less
    DOI: 10.1364/PRJ.475233 Cite this Article Set citation alerts
    Sicheng Li, Jiangming Xu, Junrui Liang, Jun Ye, Yang Zhang, Xiaoya Ma, Jinyong Leng, Pu Zhou. Multi-wavelength random fiber laser with a spectral-flexible characteristic[J]. Photonics Research, 2023, 11(2): 159 Copy Citation Text show less
    References

    [1] S. K. Turitsyn, S. A. Babin, A. E. El-Taher, P. Harper, D. V. Churkin, S. I. Kablukov, J. D. Ania-Castañón, V. Karalekas, E. V. Podivilov. Random distributed feedback fibre laser. Nat. Photonics, 4, 231-235(2010).

    [2] S. K. Turitsyn, S. A. Babin, D. V. Churkin, I. D. Vatnik, M. Nikulin, E. V. Podivilov. Random distributed feedback fibre lasers. Phys. Rep., 542, 133-193(2014).

    [3] D. V. Churkin, S. Sugavanam, I. D. Vatnik, Z. Wang, E. V. Podivilov, S. A. Babin, Y. Rao, S. K. Turitsyn. Recent advances in fundamentals and applications of random fiber lasers. Adv. Opt. Photon., 7, 516-569(2015).

    [4] A. S. L. Gomes, A. L. Moura, C. B. de Araújo, E. P. Raposo. Recent advances and applications of random lasers and random fiber lasers. Prog. Quantum. Electron., 78, 100343(2021).

    [5] S. Du, T. Qi, D. Li, P. Yan, M. Gong, Q. Xiao. 10 kW fiber amplifier seeded by random fiber laser with suppression of spectral broadening and SRS. IEEE Photon. Technol. Lett., 34, 721-724(2022).

    [6] H. Zhang, J. Wu, Y. Wan, P. Wang, B. Yang, X. Xi, X. Wang, P. Zhou. Kilowatt random Raman fiber laser with full-open cavity. Opt. Lett., 47, 493-496(2022).

    [7] H. Wu, W. Z. Wang, Y. Li, C. X. Li, J. Y. Yao, Z. N. Wang, H. K. Liang. Difference-frequency generation of random fiber lasers for broadly tunable mid-infrared continuous-wave random lasing generation. J. Lightwave Technol., 40, 2965-2970(2022).

    [8] Y. Zhang, J. Song, J. Ye, J. Xu, T. Yao, P. Zhou. Tunable random Raman fiber laser at 1.7 μm region with high spectral purity. Opt. Express, 27, 28800-28807(2019).

    [9] S. Lin, Z. Wang, J. Li, S. Chen, Y. Rao, G. Peng, A. S. L. Gomes. Nonlinear dynamics of four-wave mixing, cascaded stimulated Raman scattering and self q-switching in a common-cavity ytterbium/Raman random fiber laser. Opt. Laser Technol., 134, 106613(2021).

    [10] E. A. Zlobina, S. I. Kablukov, S. A. Babin. Linearly polarized random fiber laser with ultimate efficiency. Opt. Lett., 40, 4074-4077(2015).

    [11] J. Xu, L. Huang, M. Jiang, J. Ye, P. Ma, J. Leng, J. Wu, H. Zhang, P. Zhou. Near-diffraction-limited linearly polarized narrow-linewidth random fiber laser with record kilowatt output. Photon. Res., 5, 350-354(2017).

    [12] J. Ye, X. Ma, Y. Zhang, J. Xu, H. Zhang, T. Yao, J. Leng, P. Zhou. Revealing the dynamics of intensity fluctuation transfer in a random Raman fiber laser. Photon. Res., 10, 618-627(2022).

    [13] T. Duan, H. Lan, H. Zhong, M. Zhou, R. Zhang, F. Gao. Hybrid multi-wavelength nonlinear photoacoustic sensing and imaging. Opt. Lett., 43, 5611-5614(2018).

    [14] Z. Wang, T. Wang, Q. Jia, W. Ma, Q. Su, P. Zhang. Triple Brillouin frequency spacing multiwavelength fiber laser with double Brillouin cavities and its application in microwave signal generation. Appl. Opt., 56, 7419-7426(2017).

    [15] H. Al-Taiy, N. Wenzel, S. Preußler, J. Klinger, T. Schneider. Ultra-narrow linewidth, stable and tunable laser source for optical communication systems and spectroscopy. Opt. Lett., 39, 5826-5829(2014).

    [16] H. Chen, S. Gao, M. Zhang, J. Zhang, L. Qiao, T. Wang, F. Gao, X. Hu, S. Li, Y. Zhu. Advances in random fiber lasers and their sensing application. Sensors, 20, 6122(2020).

    [17] P. Huang, X. Shu, Z. Zhang. Multi-wavelength random fiber laser with switchable wavelength interval. Opt. Express, 28, 28686-28695(2020).

    [18] S. Saleh, N. A. Cholan, A. H. Sulaiman, M. A. Mahdi. Stable multiwavelength erbium-doped random fiber laser. IEEE J. Sel. Top. Quantum Electron., 24, 0902106(2018).

    [19] J. Ye, J. Xu, J. Song, H. Wu, H. Zhang, J. Wu, P. Zhou. Flexible spectral manipulation property of a high power linearly polarized random fiber laser. Sci. Rep., 8, 2173(2018).

    [20] S. A. Babin, A. E. El-Taher, P. Harper, E. V. Podivilov, S. K. Turitsyn. Tunable random fiber laser. Phys. Rev. A, 84, 021805(2011).

    [21] A. E. El-Taher, P. Harper, S. A. Babin, D. V. Churkin, E. V. Podivilov, J. D. Ania-Castanon, S. K. Turitsyn. Effect of Rayleigh-scattering distributed feedback on multiwavelength Raman fiber laser generation. Opt. Lett., 36, 130-132(2011).

    [22] J. Ye, Y. Zhang, J. Xu, J. Song, T. Yao, H. Xiao, J. Leng, P. Zhou. Broadband pumping enabled flat-amplitude multi-wavelength random Raman fiber laser. Opt. Lett., 45, 1786-1789(2020).

    [23] X. Ma, J. Xu, J. Ye, Y. Zhang, L. Huang, T. Yao, J. Leng, Z. Pan, P. Zhou. Cladding-pumped Raman fiber laser with 0.78% quantum defect enabled by phosphorus-doped fiber. High Power Laser Sci. Eng., 10, e8(2022).

    [24] L. Zhang, H. Jiang, X. Yang, W. Pan, Y. Feng. Ultra-wide wavelength tuning of a cascaded Raman random fiber laser. Opt. Lett., 41, 215-218(2016).

    [25] L. Zhang, H. Jiang, X. Yang, W. Pan, S. Cui, Y. Feng. Nearly-octave wavelength tuning of a continuous wave fiber laser. Sci. Rep., 7, 42611(2017).

    [26] A. R. Sarmani, R. Zamiri, M. H. Abu Bakar, B. Z. Azmi, A. W. Zaidan, M. A. Mahdi. Tunable Raman fiber laser induced by Rayleigh backscattering in an ultra-long cavity. J. Eur. Opt. Soc.-Rapid., 6, 11043(2011).

    [27] Y. Y. Zhu, W. L. Zhang, Y. Jiang. Tunable multi-wavelength fiber laser based on random Rayleigh back-scattering. IEEE Photon. Technol. Lett., 25, 1559-1561(2013).

    [28] H. Wu, B. Han, Y. Liu. Tunable narrowband cascaded random Raman fiber laser. Opt. Express, 29, 21539-21550(2021).

    [29] L. Zhang, Y. Xu, P. Lu, S. Mihailov, L. Chen, X. Bao. Multi-wavelength Brillouin random fiber laser via distributed feedback from a random fiber grating. J. Lightwave Technol., 36, 2122-2128(2018).

    [30] J. Wang, J. Zhang, A. Wang, X. Jiang, J. Yao, Q. Zhan. Cascaded stimulated Brillouin scattering erbium-doped fiber laser generating orbital angular momentum beams at tunable wavelengths. Opt. Express, 29, 18408-18419(2021).

    [31] T. Huang, X. Li, P. P. Shum, Q. J. Wang, X. Shao, L. Wang, H. Li, Z. Wu, X. Dong. All-fiber multiwavelength thulium-doped laser assisted by four-wave mixing in highly germania-doped fiber. Opt. Express, 23, 340-348(2015).

    [32] Y. Guo, F. Yan, T. Feng, Q. Qin, D. Cheng, B. Guan, T. Li, C. Yu, H. Zhou, K. Kumamoto, Y. Suo. Multi-wavelength thulium-doped fiber laser at 2.05 μm incorporating a superimposed polarization-maintaining fiber Bragg grating. Infrared Phys Technol., 122, 104046(2022).

    [33] Y. Zhang, J. Ye, X. Ma, J. Xu, J. Song, T. Yao, P. Zhou. High power tunable multiwavelength random fiber laser at 1.3 μm waveband. Opt. Express, 29, 5516-5524(2021).

    [34] A. M. Salman, S. K. Al-Hayali, R. A. Faris, A. Al-Janabi. Hybrid nanocomposite film provides FWM and Fabry Perot filter: towards multi-wavelength fiber laser generation in 1 μm region. Optik, 242, 167375(2021).

    [35] L. Zhang, F. Yan, T. Feng, W. Han, B. Guan, Q. Qin, Y. Guo, W. Wang, Z. Bai, H. Zhou, Y. Suo. Six-wavelength-switchable narrow-linewidth thulium-doped fiber laser with polarization-maintaining sampled fiber Bragg grating. Opt. Laser Technol., 136, 106788(2021).

    [36] J. Ye, X. Ma, Y. Zhang, J. Xu, H. Zhang, T. Yao, J. Leng, P. Zhou. From spectral broadening to recompression: dynamics of incoherent optical waves propagating in the fiber. PhotoniX, 2, 15(2021).

    [37] J. Liu, Y. Chen, Y. Li, H. Zhang, S. Zheng, S. Xu. Switchable dual-wavelength q-switched fiber laser using multilayer black phosphorus as a saturable absorber. Photon. Res., 6, 198-203(2018).

    [38] B. Guo, X. Guo, L. Tang, W. Yang, Q. Chen, Z. Ren. Ultra-long-period grating-based multi-wavelength ultrafast fiber laser [invited]. Chin. Opt. Lett., 19, 071405(2021).

    [39] Z. Guo, T. Liu, J. Peng, Y. Zhu, K. Huang, H. Zeng. Self-started dual-wavelength mode-locking with well-controlled repetition rate difference. J. Lightwave Technol., 39, 3575-3581(2021).

    [40] P. C. Shardlow, J. Ward, C. Pannell, S. Valle, W. A. Clarkson. Null-frequency-shift acousto-optic tunable filter for wavelength tuning of a tm fibre laser. European Conference on Lasers and Electro-Optics–European Quantum Electronics Conference, CJ_14_16(2015).

    [41] M. Pawliszewska, M. R. Majewski, S. D. Jackson. Electronically tunable picosecond pulse generation from Ho3+-doped fluoride fiber laser using frequency-shifted feedback. Opt. Lett., 45, 5808-5811(2020).

    [42] K. V. Zaichenko, B. S. Gurevich. Spectral selection using acousto-optic tunable filters for the skin lesions diagnostics. European Conferences on Biomedical Optics (ECBO), EM1A.8(2021).

    [43] A. Machikhin. Acousto-optical tunable filters: applications in 3D imaging and multi-wavelength digital holography. OSA Imaging and Applied Optics Congress (3D, COSI, DH, ISA, pcAOP), DM5E.1(2021).

    [44] W. Yue, T. Chen, W. Kong, Z. Ji, L. Yin, G. Huang, Z. He, R. Shu. Flexible wavelength generation from a Yb-doped fiber laser incorporating multifunctional acousto-optic tunable filter. Opt. Lett., 46, 1041-1044(2021).

    [45] S. Li, J. Xu, J. Liang, J. Ye, Y. Zhang, X. Ma, P. Zhou. High-power multi-wavelength Yb-doped fiber laser with a tunable interval, amplitude, and a number of channels. Opt. Lett., 47, 4123-4126(2022).

    [46] N. Hashimoto, H. Miyata, Y. Takasu, G. Han, T. Uematsu, T. Nakazawa. Tunable erbium-doped fiber ring laser using acousto-optic tunable filter. Integrated Photonics Research, ITuG4(2001).

    [47] W. Yang, Y. Liu, L. Xiao, Z. Yang. Wavelength-tunable erbium-doped fiber ring laser employing an acousto-optic filter. J. Lightwave Technol., 28, 118-122(2010).

    [48] L. Huang, X. Song, P. Chang, W. Peng, W. Zhang, F. Gao, F. Bo, G. Zhang, J. Xu. All-fiber tunable laser based on an acousto-optic tunable filter and a tapered fiber. Opt. Express, 24, 7449-7455(2016).

    [49] J. Ye, J. Xu, Y. Zhang, J. Song, J. Leng, P. Zhou. Spectrum-manipulable hundred-watt-level high-power superfluorescent fiber source. J. Lightwave Technol., 37, 3113-3118(2019).

    [50] J. Ye, Y. Zhang, J. Xu, J. Song, T. Yao, H. Xiao, J. Leng, P. Zhou. Investigations on the extreme frequency shift of phosphosilicate random fiber laser. J. Lightwave Technol., 38, 3737-3744(2020).

    Sicheng Li, Jiangming Xu, Junrui Liang, Jun Ye, Yang Zhang, Xiaoya Ma, Jinyong Leng, Pu Zhou. Multi-wavelength random fiber laser with a spectral-flexible characteristic[J]. Photonics Research, 2023, 11(2): 159
    Download Citation