Ultrafast Science, Volume. 3, Issue 1, 0016(2023)

All-PM Fiber Mamyshev Oscillator Delivers Hundred-Nanojoule and Multi-Watt Sub-100 fs Pulses

Tao Wang, Can Li*, Bo Ren, Kun Guo, and Pu Zhou*
Author Affiliations
  • College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China.
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    References(43)

    [4] [4] Zhang J, Pӧtzlberger M, Wang Q, Brons J, Seidel M, Bauer D, Sutter D, Pervak V, Apolonski A, Mak KF, et al. Distributed Kerr lens mode-locked Yb:YAG thin-disk oscillator. Ultrafast Sci. 2022;2022:9837892.

    [5] [5] Wang X, Liu X, Lu X, Chen J, Long Y, Li W, Chen H, Chen X, Bai P, Li Y, et al. 13.4 fs, 0.1 Hz OPCPA front end for the 100 PW-class laser facility. Ultrafast Sci. 2022;2022:9894358.

    [7] [7] Zervas MN, Codemard CA. High power fiber lasers: A review. IEEE J Sel Top Quantum Electron. 2014;20(5):219–241.

    [8] [8] Shi W, Fang Q, Zhu X, Norwood RA, Peyghambarian N. Fiber lasers and their applications [Invited]. Appl Opt. 2014;53(28):6554–6568.

    [9] [9] Fu W, Wright LG, Sidorenko P, Backus S, Wise FW. Several new directions for ultrafast fiber lasers [Invited]. Opt Express. 2018;26(8):9432–9463.

    [10] [10] Yu H, Wang X, Zhang H, Su R, Zhou P, Chen J. Linearly-polarized fiber-integrated nonlinear CPA system for high-average-power femtosecond pulses generation at 1.06 μm. J Lightwave Technol. 2016;34(18):4271–4277.

    [11] [11] Yusim A, Samartsev I, Shkurikhin O, Myasnikov D, Bordenyuk A, Platonov N, Kancharla V, Gapontsev V. New generation of high average power industry grade ultrafast ytterbium fiber lasers. Paper presented at: SPIE Proceedings Vol. 9728 Fiber Lasers XIII: Technology, Systems, and Applications; 11 March 2016.

    [12] [12] Szczepanek J, Kardaś TM, Michalska M, Radzewicz C, Stepanenko Y. Simple all-PM-fiber laser mode-locked with a nonlinear loop mirror. Opt Lett. 2015;40(15):3500–3503.

    [13] [13] Zhao LM, Bartnik AC, Tai QQ, Wise FW. Generation of 8 nJ pulses from a dissipative-soliton fiber laser with a nonlinear optical loop mirror. Opt Lett. 2013;38(11):1942–1944.

    [14] [14] Erkintalo M, Aguergaray C, Runge A, Broderick NGR. Environmentally stable all-PM all-fiber giant chirp oscillator. Opt Express. 2012;20(20):22669–22674.

    [15] [15] Borodkin A, Honzátko P. High-energy all-PM Yb-doped fiber laser with a nonlinear optical loop mirror. Opt Laser Technol. 2021;143:107353.

    [16] [16] Deng D, Zhang H, Gong Q, He L, Li D, Gong M. Energy scalability of the dissipative soliton in an all-normal-dispersion fiber laser with nonlinear amplifying loop mirror. Opt Laser Technol. 2020;125:106010.

    [17] [17] Zhou J, Gu X, 50.5 nJ, 750 fs all-fiber all polarization-maintaining fiber laser. Paper presented at: Proceedings of the 2015 Conference on Lasers and Electro-Optics (CLEO); 2015 May 10–15; San Jose, CA, California.

    [18] [18] Kharenko DS, Gonta VA, Babin SA. 50 nJ 250 fs all-fibre Raman-free dissipative soliton oscillator. Laser Phys Lett. 2016;13(2):025107.

    [19] [19] Mortag D, Wandt D, Morgner U, Kracht D, Neumann J. Sub-80-fs pulses from an all-fiber-integrated dissipative-soliton laser at 1 μm. Opt Express. 2011;19(2):546–551.

    [20] [20] Huang Y, Luo Z, Xiong F, Li Y, Zhong M, Cai Z, Xu H, Fu H. Direct generation of 2 W average-power and 232 nJ picosecond pulses from an ultra-simple Yb-doped double-clad fiber laser. Opt Lett 2015;40(6):1097–1100.

    [21] [21] Du T, Luo Z, Yang R, Huang Y, Ruan Q, Cai Z, Xu H. 1.2-W average-power, 700-W peak-power, 100-ps dissipative soliton resonance in a compact Er:Yb co-doped double-clad fiber laser. Opt Lett. 2017;42(3):462–465.

    [22] [22] Regelskis K, Želudevičius J, Viskontas K, Račiukaitis G. Ytterbium-doped fiber ultrashort pulse generator based on self-phase modulation and alternating spectral filtering. Opt Lett. 2015;40(22):5255–5258.

    [23] [23] Liu Z, Ziegler ZM, Wright LG, Wise FW. Megawatt peak power from a Mamyshev oscillator. Optica. 2017;4(6):649–654.

    [24] [24] Sidorenko P, Fu W, Wright LG, Olivier M, Wise FW. Self-seeded, multi-megawatt, Mamyshev oscillator. Opt Lett. 2018;43(11):2672–2675.

    [25] [25] Liu W, Liao R, Zhao J, Cui J, Song Y, Wang C, Hu M. Femtosecond Mamyshev oscillator with 10-MW-level peak power. Optica. 2019;6(2):194–197.

    [26] [26] Olivier M, Boulanger V, Guilbert-Savary F, Sidorenko P, Wise FW, Piché M. Femtosecond fiber Mamyshev oscillator at 1550nm. Opt Lett. 2019;44(4):851–854.

    [27] [27] Boulanger V, Olivier M, Guilbert-Savary F, Trépanier F, Bernier M, Piché M. All-fiber Mamyshev oscillator enabled by chirped fiber Bragg gratings. Opt Lett. 2020;45(12):3317–3320.

    [28] [28] Luo X, Tuan TH, Saini TS, Nguyen HPT, Suzuki T, Ohishi Y. All-fiber mode-locked laser based on Mamyshev mechanism with high-energy pulse generation at 1550 nm. J Lightwave Technol. 2020;38(6):1468–1473.

    [29] [29] Ma C, Khanolkar A, Zang Y, Chong A. Ultrabroadband, few-cycle pulses directly from a Mamyshev fiber oscillator. Photonics Res. 2020;8(1):65–69.

    [30] [30] Repgen P, Schuhbauer B, Hinkelmann M, Wandt D, Wienke A, Morgner U, Neumann J, Kracht D. Mode-locked pulses from a Thulium-doped fiber Mamyshev oscillator. Opt Express. 2020;28(9):13837–13844.

    [31] [31] Xu S-S, Liu M, Wei Z-W, Luo AP, Xu WC, Luo ZC. Multipulse dynamics in a Mamyshev oscillator. Opt Lett. 2020;45(9):2620–2623.

    [32] [32] Chen Y-H, Sidorenko P, Thorne R, Wise F. Starting dynamics of a linear-cavity femtosecond Mamyshev oscillator. J Opt Soc Am B. 2021;38(3):743–748.

    [33] [33] Yan D, Li X, Zhang S, Liu J. Pulse dynamic patterns in a self-starting Mamyshev oscillator. Opt Express. 2021;29(7):9805–9815.

    [34] [34] Poeydebat E, Scol F, Vanvincq O, Bouwmans G, Hugonnot E. All-fiber Mamyshev oscillator with high average power and harmonic mode-locking. Opt Lett. 2020;45(6):1395–1398.

    [35] [35] Piechal B, Szczepanek J, Kardaś TM, Stepanenko Y. Mamyshev oscillator with a widely tunable repetition rate. J Lightwave Technol. 2021;39(2):574–581.

    [36] [36] Wang T, Ren B, Li C, Wu J, Su R, Ma P, Luo ZC, Zhou P. Over 80 nJ sub-100 fs all-fiber Mamyshev oscillator. IEEE J Sel Top Quantum Electron. 2021;27(6):1–5.

    [37] [37] Haig H, Sidorenko P, Thorne R, Wise F. Megawatt pulses from an all-fiber and self-starting femtosecond oscillator. Opt Lett. 2022;47(4):762–765.

    [38] [38] Sun R, Jin D, Tan F, Wei S, Hong C, Xu J, Liu J, Wang P. High-power all-fiber femtosecond chirped pulse amplification based on dispersive wave and chirped-volume Bragg grating. Opt Express. 2016;24(20):22806–22812.

    [40] [40] Bednyakova A, Kuprikov E, Geraseva I, Kokhanovskiy A. Influence of spectral filtration on pulse dynamics in ring-cavity Mamyshev oscillator. Appl Sci. 2021;11(21):10398.

    [41] [41] Perego AM. High-repetition-rate, multi-pulse all-normal-dispersion fiber laser. Opt Lett. 2017;42(18):3574–3577.

    [42] [42] Liu X, Pang M. Revealing the buildup dynamics of harmonic mode-locking states in ultrafast lasers. Laser Photonics Rev. 2019;13(9):1800333.

    [43] [43] Sidorenko P, Fu W, Wise F. Nonlinear ultrafast fiber amplifiers beyond the gain-narrowing limit. Optica. 2019;6(10):1328–1333.

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    Tao Wang, Can Li, Bo Ren, Kun Guo, Pu Zhou. All-PM Fiber Mamyshev Oscillator Delivers Hundred-Nanojoule and Multi-Watt Sub-100 fs Pulses[J]. Ultrafast Science, 2023, 3(1): 0016

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    Paper Information

    Category: Research Articles

    Received: Aug. 2, 2022

    Accepted: Jan. 2, 2023

    Published Online: Dec. 4, 2023

    The Author Email: Li Can (lc0616@163.com), Zhou Pu (zhoupu203@163.com)

    DOI:10.34133/ultrafastscience.0016

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