Acta Photonica Sinica, Volume. 51, Issue 11, 1114001(2022)

Tm3+-doped Fiber Random Laser Based on Fiber Grating Feedback Technology

Decai ZHU1,2, Yaozong HU1,2, Lewen ZHOU1,2, Changqing HUANG3, and Xinyong DONG1,2、*
Author Affiliations
  • 1School of Information Engineering,Guangdong University of Technology,Guangzhou 510006,China
  • 2Guangdong Provincial Key Laboratory of Information Photonics Technology,Guangzhou 510006,China
  • 3College of Optical and Electronic Technology,China Jiliang University,Hangzhou 310018,China
  • show less
    References(30)

    [1] HU Pengbing, DONG Xinyong. Research progress of random distributed feedback fiber lasers[J]. Progress in Laser and Optoelectronics, 11, 22-27(2011).

    [2] RAO Yunjiang. Research advances of random fiber lasers and its applications[J]. Acta Photonica Sinica, 48, 1148002(2019).

    [3] DE MATOS C J S, MENEZES L D S, BRITO SILVA A M et al. Random fiber laser[J]. Physical Review Letters, 99, 153903(2007).

    [4] FOTIADI A A. Random lasers: an incoherent fibre laser[J]. Nature Photonics, 4, 204-205(2010).

    [5] TURITSYN S K, BABIN S A, EL-TAHER A E et al. Random distributed feedback fibre laser[J]. Nature Photonics, 4, 231-235(2010).

    [6] CHURKIN D V, KOLOKOLOV I V, PODIVILOV E V et al. Wave kinetics of random fibre lasers[J]. Nature Communications, 6, 6214(2015).

    [7] SUGAVANAM S, SOROKINA M, CHURKIN D V. Spectral correlations in a random distributed feedback fibre laser[J]. Nature Communications, 8, 15514(2017).

    [8] GONZALEZ I R R, LIMA B C, PINCHEIRA P et al. Turbulence hierarchy in a random fibre laser[J]. Nature Communications, 8, 15731(2017).

    [9] HU Z J, ZHANG Q, MIAO B et al. Coherent random fiber laser based on nanoparticles scattering in the extremely weakly scattering regime[J]. Physical Review Letters, 109, 253901(2012).

    [10] FOTIADII A A, PREDA E, MEGRET P. Brillouin fiber laser with incoherent feedback[C], CTuI6(2011).

    [11] JACKSON S D. Towards high-power mid-infrared emission from a fibre laser[J]. Nature Photonics, 6, 423-431(2012).

    [12] WANG L L, DONG X Y, SHUM P P et al. Tunable erbium-doped fiber laser based on random distributed feedback[J]. IEEE Photonics Journal, 6, 1501705(2014).

    [13] LIZÁRRAGA N, PUENTE N P, CHAIKINA E I et al. Single-mode Er-doped fiber random laser with distributed Bragg grating feedback[J]. Optics Express, 17, 395-404(2009).

    [14] WANG L L, DONG X Y, SHUM P P et al. Random laser with multiphase-shifted Bragg grating in Er/Yb-codoped fiber[J]. Journal of Lightwave Technology, 33, 95-99(2015).

    [15] XU Y P, GAO S, LU P et al. Low-noise Brillouin random fiber laser with a random grating-based resonator[J]. Optics Letters, 41, 3197-3200(2016).

    [16] DU X Y, ZHANG H W, WANG X L et al. Short cavity-length random fiber laser with record power and ultrahigh efficiency[J]. Optics Letters, 41, 571-574(2016).

    [17] ZHANG H W, LONG H, PU Z et al. More than 400W random fiber laser with excellent beam quality[J]. Optics Letters, 42, 3347-3350(2017).

    [18] ZHANG L, DONG J, FENG Y. High-power and high-order random raman fiber lasers[J]. IEEE Journal of Selected Topics in Quantum Electronics, 24, 1400106(2018).

    [19] MA R, RAO Y J, ZHAN W L et al. Multimode random fiber laser for speckle-free imaging[J]. IEEE Journal of Selected Topics in Quantum Electronics, 25, 09000106(2019).

    [20] WANG Z N, SUN W, WU H et al. Long-distance random fiber laser point sensing system incorporating active fiber[J]. Optics Express, 24, 22448-22453(2016).

    [21] JIN X X, DU X Y, WANG X et al. High-power ultralong-wavelength Tm-doped silica fiber laser cladding-pumped with a random distributed feedback fiber laser[J]. Scientific Reports, 6, 30052(2016).

    [22] WU H S, PENG W, SONG J X et al. High power tunable mid-infrared optical parametric oscillator enabled by random fiber laser[J]. Optics Express, 26, 6446-6455(2018).

    [23] JOHNSON D E. Use of the holmium: YAG (Ho: YAG) laser for treatment of superficial bladder carcinoma[J]. Lasers in Surgery and Medicine, 14, 213-218(1994).

    [24] LEUNIG A, JANDA P, SROKA R et al. Ho:YAG laser treatment of hyperplastic inferior nasal turbinates[J]. The Laryngoscope, 109, 1690-1695(1999).

    [25] SUN F T, ZHANG W T, ZHUANG Y et al. Application of endoscopic Ho:YAG laser incision technique treating urethral strictures and urethral atresias in pediatric patients[J]. Pediatric Surgery International, 22, 514-518(2006).

    [26] DIANOV E M, BUFETOV I A, MASHINSKY V M et al. Raman fibre lasers emitting at a wavelength above 2 μm[J]. Quantum Electronics, 34, 695-697(2004).

    [27] TANG Y L, XU J Q. A random Q-switched fiber laser[J]. Scientific Reports, 5, 9338(2015).

    [28] JIN X X, LOU Z K, ZHANG H W et al. Random distributed feedback fiber laser at 2.1 μm[J]. Optics Letters, 41, 4923-4926(2016).

    [29] MA R, LIU J, FANG Z Q et al. Mid-infrared random fiber laser assisted by the passive feedback[J]. Journal of Lightwave Technology, 39, 5089-5095(2021).

    [30] ZHANG L, XU Y P, LU P et al. Multi-wavelength Brillouin random fiber laser via distributed feedback from a random fiber grating[J]. Journal of Lightwave Technology, 36, 2122-2128(2018).

    Tools

    Get Citation

    Copy Citation Text

    Decai ZHU, Yaozong HU, Lewen ZHOU, Changqing HUANG, Xinyong DONG. Tm3+-doped Fiber Random Laser Based on Fiber Grating Feedback Technology[J]. Acta Photonica Sinica, 2022, 51(11): 1114001

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category:

    Received: Jan. 6, 2022

    Accepted: Mar. 14, 2022

    Published Online: Dec. 13, 2022

    The Author Email: Xinyong DONG (dongxy@gdut.edu.cn)

    DOI:10.3788/gzxb20225111.1114001

    Topics