Chinese Journal of Lasers, Volume. 46, Issue 5, 0508007(2019)
Research Progress of High-Power Ultrafast Fiber Lasers
[1] Corkum P B, Krausz F. Attosecond science[J]. Nature Physics, 3, 381-387(2007).
[2] MüLLER D, Backus S, Read K et al. . Cryogenic cooling multiplies output of Ti∶sapphire laser[J]. Laser Focus World, 41, 65-68(2005).
[5] Haus H A. Mode-locking of lasers[J]. IEEE Journal of Selected Topics in Quantum Electronics, 6, 1173-1185(2000).
[13] Mamyshev P V. All-optical data regeneration based on self-phase modulation effect[C]. 24th European Conference on Optical Communication, 475-476(1998).
[14] Regelskis K. Želudevi ius J, Viskontas K, et al. Ytterbium-doped fiber ultrashort pulse generator based on self-phase modulation and alternating spectral filtering[J]. Optics Letters, 40, 5255-5258(2015).
[18] Olivier M, Boulanger V, Guilbert-Savary F et al. Femtosecond Mamyshev oscillator at 1550 nm [2019-01-21]. https:∥doi.org/10.1364/[2019-01-21]. ASSL., ATu1A, 4(2018).
[34] Li Y H, Wang L Z, Kang Y et al. Microfiber-enabled dissipative soliton fiber laser at 2 μm[J]. Optics Letters, 43, 6105-6108(2018).
[35] Cheng H H, Lin W, Luo Z Q et al. Passively mode-locked Tm 3+-doped fiber laser with gigahertz fundamental repetition rate[J]. IEEE Journal of Selected Topics in Quantum Electronics, 24, 1-6(2018).
[37] Tarasov N, Perego A M, Churkin D V et al. Mode-locking via dissipative Faraday instability[J]. Nature Communications, 7, 12441(2016).
[38] He X, Luo A P, Yang Q et al. 60 nm bandwidth, 17 nJ noiselike pulse generation from a thulium-doped fiber ring laser[J]. Applied Physics Express, 6, 112702(2013).
[42] Wang X F, Xia Q, Gu B. A 1.9 μm noise-like mode-locked fiber laser based on compact figure-9 resonator[J]. Optics Communications, 434, 180-183(2019).
[43] Zhao K J, Wang P, Ding Y H et al. High-energy dissipative soliton resonance and rectangular noise-like pulse in a figure-9 Tm fiber laser[J]. Applied Physics Express, 12, 012002(2019).
[46] Du T J, Li W W, Ruan Q J et al. 2 μm high-power dissipative soliton resonance in a compact σ-shaped Tm-doped double-clad fiber laser[J]. Applied Physics Express, 11, 052701(2018).
[47] Snitzer E, Po H, Hakimi F et al[2019-01-21]. Double clad, offset core Nd fiber laser[2019-01-21]. https:∥www.osapublishing.org/view_article.cfm?gotourl=https%3A%2F%2Fwww%2Eosapublishing%2Eorg%2FDirectPDFAccess%2F71545563-F986-10F8-2082CFC83610E9.
[55] Stihler C, Jauregui C, Tünnermann A. et al. Modal energy transfer by thermally induced refractive index gratings in Yb-doped fibers[J]. Light: Science & Applications, 7, 59(2018).
[64] Gaida C, Gebhardt M, Heuermann T. et al. Ultrafast thulium fiber laser system emitting more than 1 kW of average power[J]. Optics Letters, 43, 5853-5856(2018).
[72] Antoine P. L'Huillier A, Lewenstein M. Attosecond pulse trains using high-order harmonics[J]. Physical Review Letters, 77, 1234(1996).
[78] Gaponenko M, Labaye F, Wittwer V. et al. Compact megahertz coherent XUV generation by HHG inside an ultrafast thin disk laser [2019-01-21]. https:∥doi.org/10.1364/[2019-01-21]. NLO., NTh3A, 1(2017).
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Xia Yu, Jiaqi Luo, Xiaosheng Xiao, Pan Wang. Research Progress of High-Power Ultrafast Fiber Lasers[J]. Chinese Journal of Lasers, 2019, 46(5): 0508007
Category: nonlinear optics
Received: Jan. 21, 2019
Accepted: Apr. 2, 2019
Published Online: Nov. 11, 2019
The Author Email: Xia Yu (eleyuxia@nus.edu.sg)