Chinese Journal of Lasers, Volume. 48, Issue 5, 0501003(2021)
Research Progress of Ytterbium-Doped Fiber-Solid High-Power Ultrashort Pulse Amplification
[1] Strickland D, Mourou G. Compression of amplified chirped optical pulses[J]. Optics Communications, 56, 219-221(1985).
[2] Zhou S A, Wise F W, Ouzounov D G. Divided-pulse amplification of ultrashort pulses[J]. Optics Letters, 32, 871-873(2007).
[3] Délen X, Zaouter Y, Martial I et al. Yb∶YAG single crystal fiber power amplifier for femtosecond sources[J]. Optics Letters, 38, 109-111(2013).
[4] Daniault L, Hanna M, Lombard L et al. Coherent beam combining of two femtosecond fiber chirped-pulse amplifiers[J]. Optics Letters, 36, 621-623(2011).
[9] Agnesi A, Carrá L, Pirzio F et al. Low repetition rate, hybrid fiber/solid-state, 1064 nm picosecond master oscillator power amplifier laser system[J]. Journal of the Optical Society of America B, 30, 2960-2965(2013).
[13] Brown D C. Heat, fluorescence, and stimulated-emission power densities and fractions in Nd∶YAG[J]. IEEE Journal of Quantum Electronics, 34, 560-572(1998).
[16] Russbueldt P, Mans T, Weitenberg J et al. Compact diode-pumped 1.1 kW Yb∶YAG Innoslab femtosecond amplifier[J]. Optics Letters, 35, 4169-4171(2010).
[17] Dietz T, Dietz T, Jenne M et al. Ultrafast thin-disk multi-pass amplifier system providing 1.9 kW of average output power and pulse energies in the 10 mJ range at 1 ps of pulse duration for glass-cleaving applications[J]. Optics Express, 28, 11415-11423(2020).
[18] Negel J P, Loescher A, Voss A et al. Ultrafast thin-disk multipass laser amplifier delivering 1.4 kW (4.7 mJ, 1030 nm) average power converted to 820 W at 515 nm and 234 W at 343 nm[J]. Optics Express, 23, 21064-21077(2015).
[19] Sangla D, Martial I, Aubry N et al. High power laser operation with crystal fibers[J]. Applied Physics B, 97, 263-273(2009).
[25] Cheng Z C, Li H H, Shi H X et al. Dissipative soliton resonance and reverse saturable absorption in graphene oxide mode-locked all-normal-dispersion Yb-doped fiber laser[J]. Optics Express, 23, 7000-7006(2015).
[26] Shi Y H, Cheng Z C, Peng Z G et al. Mode-locked fiber laser with a nonlinear amplifying loop mirror at different repetition rate varying from 100 kHz to 21 MHz[J]. Proceedings of SPIE, 11437, 114370L(2020).
[27] Yu M, Yu M, Cheng Z C et al. Numerical modeling and experimental investigation of ultrafast pulses generation from all-polarization-maintaining dispersion-managed nonlinear polarization evolution Yb-doped fiber laser[J]. Optics Express, 28, 32764-32776(2020).
[28] Elahi P, Yılmaz S, Akçaalan Ö et al. Doping management for high-power fiber lasers: 100 W, few-picosecond pulse generation from an all-fiber-integrated amplifier[J]. Optics Letters, 37, 3042-3044(2012).
[30] Yu Z H, Shi W, Dong X Z et al. 110 W all-fiber picosecond master oscillator power amplifier based on large-core-diameter ytterbium-doped fiber[J]. Applied Optics, 55, 4119-4122(2016).
[33] Yu H L, Wang X L, Zhang H W et al. Linearly-polarized fiber-integrated nonlinear CPA system for high-average-power femtosecond pulses generation at 1.06 μm[J]. Journal of Lightwave Technology, 34, 4271-4277(2016).
[38] Sun R Y, Jin D C, Tan F Z et al. High-power all-fiber femtosecond chirped pulse amplification based on dispersive wave and chirped-volume Bragg grating[J]. Optics Express, 24, 22806-22812(2016).
[41] Röser F, Rothhardt J, Eidam T et al. Millijoule pulse energy high repetition rate femtosecond fiber CPA system[J]. Optics Letters, 32, 3495-3497(2007).
[42] Eidam T, Rothhardt J, Stutzki F et al. Fiber chirped-pulse amplification system emitting 3.8 GW peak power[J]. Optics Express, 19, 255-260(2011).
[43] Lavenu L, Natile M, Guichard F et al. High-energy few-cycle Yb-doped fiber amplifier source based on a single nonlinear compression stage[J]. Optics Express, 25, 7530-7537(2017).
[44] Yang P L, Hao T, Hu Z Q et al. Highly stable Yb-fiber laser amplifier of delivering 32-μJ, 153-fs pulses at 1-MHz repetition rate[J]. Applied Physics B, 124, 1-6(2018).
[45] Manchee C P K, Möller J, Miller R J D. Highly stable, 100 W average power from fiber-based ultrafast laser system at 1030 nm based on single-pass photonic-crystal rod amplifier[J]. Optics Communications, 437, 6-10(2019).
[49] Hong K H, Siddiqui A, Moses J et al. Generation of 287 W, 5.5 ps pulses at 78 MHz repetition rate from a cryogenically cooled Yb∶YAG amplifier seeded by a fiber chirped-pulse amplification system[J]. Optics Letters, 33, 2473-2475(2008).
[52] Brown D C, Singley J M, Kowalewski K et al. High sustained average power cw and ultrafast Yb∶YAG near-diffraction-limited cryogenic solid-state laser[J]. Optics Express, 18, 24770-24792(2010).
[53] Kawato S, Sugiura Y, Kobayashi T. Gain and thermal characteristics of end-pumped thin-rod Yb∶YAG amplifier[C]. //Advanced Solid-State Lasers, Washington, D.C.: OSA, WB4(2020).
[55] Matsubara S, Tanaka M, Takama M et al. A picosecond thin-rod Yb∶YAG regenerative laser amplifier with the high average power of 20 W[J]. Laser Physics Letters, 10, 055810(2013).
[56] Délen X, Aubourg A, Deyra L et al. Single crystal fiber for laser sources[J]. Proceedings of SPIE, 9342, 934202(2015).
[57] Zaouter Y, Martial I, Aubry N et al. Direct amplification of ultrashort pulses in μ-pulling-down Yb∶YAG single crystal fibers[J]. Optics Letters, 36, 748-750(2011).
[60] Kuznetsov I, Mukhin I, Palashov O et al. Thin-rod Yb∶YAG amplifiers for high average and peak power lasers[J]. Optics Letters, 43, 3941-3944(2018).
[61] Kuznetsov I. High average and peak power laser based on Yb∶YAG amplifiers of advanced geometries developed in IAP RAS[C]. //IEEE 2018 International Conference Laser Optics (ICLO), June 4-8, 2018, Saint Petersburg, Russia(2018).
[69] Pouysegur J, Guichard F, Zaouter Y et al. Hybrid high-energy high-power pulse width-tunable picosecond source[J]. Optics Letters, 40, 5184-5187(2015).
[71] Rodin A M, Zopelis E. Comparison of Yb∶YAG single crystal fiber with larger aperture CPA pumped at 940 nm and 969 nm[C]. //2017 Conference on Lasers and Electro-Optics Pacific Rim (CLEO-PR), July 31-August 4, 2017, Singapore, Singapore., 1-5(2017).
[72] Rodin A, Zopelis E. Optimised configuration for two cascaded double-pass Yb∶YAG chirped pulse amplifier[C]. //2017 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC), June 25-29,2017, Munich, Germany.(2017).
[75] Obronov I V, Demkin A S, Myasnikov D V. Solid-state Yb∶YAG amplifier pumped by a single-mode laser at 920 nm[J]. Quantum Electronics, 48, 212-214(2018).
Get Citation
Copy Citation Text
Yan Xu, Zhigang Peng, Zhaochen Cheng, Yuhang Shi, Beibei Wang, Pu Wang. Research Progress of Ytterbium-Doped Fiber-Solid High-Power Ultrashort Pulse Amplification[J]. Chinese Journal of Lasers, 2021, 48(5): 0501003
Category: laser devices and laser physics
Received: Nov. 5, 2020
Accepted: Dec. 21, 2020
Published Online: Mar. 12, 2021
The Author Email: Peng Zhigang (pzg@bjut.edu.cn), Wang Pu (pzg@bjut.edu.cn)