[1] W FU, L G WRIGHT, P SIDORENKO et al. Several new directions for ultrafast fiber lasers. Optics Express, 26, 9432-9463(2018).
[2] H WEI, B LI, W SHI et al. General description and understanding of the nonlinear dynamics of mode-locked fiber lasers. Scientific Reports, 7, 1-12(2017).
[3] L SHAH, M E FERMANN, J W DAWSON et al. Micromachining with a 50 W, 50 µJ, sub-picosecond fiber laser system. Optics Express, 14, 12546-12551(2006).
[4] L F MOLLENAUER, R H STOLEN. The soliton laser. Optics Letters, 9, 13-15(1984).
[5] H A HAUSE, K TAMURA. Stretched-pulse additive pulse mode-locking in fiber ring lasers: theory and experiment. IEEE Journal of Quantum Electronics: A Publication of the IEEE Quantum Electronics and Applications Society, 31, 591-598(1995).
[6] G LENZ, K TAMURA, H A HAUSE et al. All-solid-state femtosecond source at 1.55 microm. Optics Letters, 20, 1289-1291(1995).
[7] M E FERMANN, V I KRUGLOV, B C THOMSEN et al. Self-similar propagation and amplification of parabolic pulses in optical fibers. Physical Review Letters, 84, 6010-6013(2000).
[8] D ANDERSON, M DESAIX, M KARLSON et al. Wave-breaking-free pulses in nonlinear-optical fibers. Journal of the Optical Society of America B, 10, 1185-1190(1993).
[9] K TAMURA, M NAKAZAWA. Pulse compression by nonlinear pulse evolution with reduced optical wave breaking in erbium-doped fiber amplifiers. Optics Letters, 21, 68-70(1996).
[10] F O ILDAY, J R BUCKLEY, W G CLARK et al. Self-similar evolution of parabolic pulses in a laser. Physical Review Letters, 92, 213902(2004).
[11] A CHONG, J R BUCKLEY, W H RENNINGER et al. All-normal-dispersion femtosecond fiber laser. Optics Express, 14, 10095-10100(2006).
[12] W H RENNINGER, A CHONG, F W WISE. Dissipative solitons in normal-dispersion fiber lasers. Physical Review A, 77, 681-700(2008).
[13] W H RENNINGER, A CHONG, F W WISE. Self-similar pulse evolution in an all-normal-dispersion laser. Physical Review A, 82, 19438-19443(2010).
[14] F W WISE, A CHONG, W H RENNINGER. High-energy femtosecond fiber lasers based on pulse propagation at normal dispersion. Laser & Photonics Review, 2, 58-73(2008).
[15] W H RENNINGER, A CHONG, F W WISE. Pulse shaping and evolution in normal-dispersion mode-locked fiber lasers. IEEE Journal of Selected Topics in Quantum Electronics: a Publication of the IEEE Lasers and Electro-optics Society, 18, 389-398(2012).
[16] R R GATTASS, E MAZUR. Femtosecond laser micromachining in transparent materials. Nature Photonics, 2, 219-225(2008).
[17] Q HAO, G S ZHU, S YANG et al. Mid-infrared transmitter and receiver modules for free-spaceoptical communication. Applied Optics, 56, 2260-2264(2017).
[18] V A SEREBRYAKOV, É V BOĬKO, N N PETRISHCHEV et al. Medical applications of mid-IR lasers. Problems and prospects. Journal of Optical Technology, 77, 6-17(2010).
[19] Z P QIN, G Q XIE, H A GU et al. Mode-locked 2.8-μm fluoride fiber laser: from soliton to breathing pulse. Advanced Photonics, 1, 065001(2019).
[20] Haoze FAN, Jinhui LIANG, Shukai ZHENG et al. 2.8 μm mid-infrared synchronously pumped mode-locked fiber laser. Chinese Journal of Lasers, 49, 222-230(2022).
[21] C HUANG, C WANG, W SHANG et al. Developing high energy dissipative soliton fiber lasers at 2 micron. Scientific Reports, 5, 13680(2015).
[22] Guangmin ZENG, Jie PENG, Pinhua TANG. Numerical investigation on self-similar mode-locked Er-doped fluoride fiber laser at 2.8 μm. Laser & Optoelectronics Progress, 59, 1314004(2022).
[23] Zhengnan SHI, Fengping YAN, Wenguo HAN et al. Theoretical analysis of self-similar pulse generation in 2 μm thulium-doped fiber laser. Laser & Optoelectronics Progress, 57, 109-114(2020).
[24] W H RENNINGER, A CHONG, F W WISE. Amplifier similaritons in a dispersion-mapped fiber laser. Optics Express, 19, 22496-22501(2011).
[25] F MENG, C LAPRE, C BILLET et al. Instabilities in a dissipative soliton-similariton laser using a scalar iterative map. Optics Letters, 45, 1232-1235(2020).
[26] B OKTEM, C ÜLGÜDÜR, F O ILDAY. Soliton-similariton fibre laser. Nature Photonics, 4, 307-311(2010).
[27] P GRELU, N AKHMEDIEV. Dissipative solitons for mode-locked lasers. Nature Photonics, 6, 84-92(2012).
[28] Ronghua LI, Zehang MA, Chengtian TANG et al. Synchronous spectrum overlapping multi-wavelength pulsed fiber laser with Mamyshev cavity. Chinese Journal of Lasers, 47, 0801002(2020).
[29] J M DUDLEY, J R TAYLOR. Supercontinuum generation in optical fibers(2010).