Infrared and Laser Engineering, Volume. 51, Issue 6, 20210442(2022)
Hundred-watt-level 1 030 nm fiber-bulk hybrid amplified laser
[1] Zhao Wanqin, Mei Xuesong, Wang Wenjun. Ultrashort pulse laser drilling of micro-holes (part 1)——theoretical study[J]. Infrared and Laser Engineering, 48, 0106008(2019).
[2] Zhao Wanqin, Mei Xuesong, Wang Wenjun. Ultrashort pulse laser drilling of micro-holes(part 2) -experimental study[J]. Infrared and Laser Engineering, 48, 0242001(2019).
[3] Peng Hongpan, Yang Ce, Lu Shang, . All-solid-state picosecond radially polarized laser and its processing characteristics[J]. Infrared and Laser Engineering, 48, 0106003(2019).
[4] Zhang Jiaru, Guan Yingchun. Surface functional microstructure of biomedical materials prepared by ultrafast laser: A review[J]. Chinese Optics, 12, 199-213(2019).
[5] Xu Y, Peng Z G, Cheng Z C, . Research progress of ytterbium-doped fiber-solid high-power ultrashort pulse amplification[J]. Chinese Journal of Lasers, 48, 0501003(2021).
[6] [6] Délen X, Aubourg A, Patrick Geges. Single crystal fiber f laser sources[C] Proceedings of SPIE, Solid State Lasers XXIV: Technology Devices, 2015, 9342: 934202.
[7] Markovic V, Rohrbacher A, Hofmann P, et al. 160 W 800 fs Yb: YAG single crystal fiber amplifier without CPA[J]. Optics Express, 23, 25883-25888(2015).
[8] Beirow F, Eckerle M, Graf T, et al. Amplification of radially polarized ultra-short pulsed radiation to average output powers exceeding 250 W in a compact single-stage Yb: YAG single-crystal fiber amplifier[J]. Applied Physics B, 126, 1-10(2020).
[9] [9] Veselis L, Bartulevicius T, Michailovas A. Generation of 40 W, 400 fs pulses at 1 MHz repetition rate from efficient, room temperature Yb: YAG doublepass amplifier seeded by fiber CPA system[C]Proceedings of SPIE, Solid State Lasers XXIX: Technology Devices, 2020, 11259: 1125925.
[10] [10] Rodin A, Zopelis E. Comparison of Yb: YAG single crystal fiber with larger aperture CPA pumped at 940 nm 969 nm[C]2017 Conference on Lasers ElectroOptics Pacific Rim (CLEOPR), 2017: 15.
[11] [11] Bu X B, Xu Y, Wang P. 100 W, 7 ps hybrid Ybfiber Yb: YAG thinrod MOPA laser[C]Sixth Symposium on Novel Photoelectronic Detection Technology Application, 2020: 114553T.
[12] Albrodt P, Délen Xavier, Besbes M, et al. Simulation and experimental investigation of beam distortions in end-pumped laser rod amplifiers[J]. Journal of the Optical Society of America B, 35, 3004-3013(2018).
[13] [13] Pflaum C, Hartmann R, Rahimi Z, et al. Modeling simulation of ultrasht pulse amplification[C]Proceedings of SPIE, Solid State Lasers XXV: Technology Devices, 2016, 9726: 972610.
[14] Lee B, Chizhov S A, Sall E. G, et al. Laser amplification in Yb: YAG thin rods of different geometries: simulation and experiment[J]. Journal of the Optical Society of America B, 35, 2594-2599(2018).
Get Citation
Copy Citation Text
Yan Xu, Zhigang Peng, Yuhang Shi, Beibei Wang, Zhaochen Cheng, Pu Wang. Hundred-watt-level 1 030 nm fiber-bulk hybrid amplified laser[J]. Infrared and Laser Engineering, 2022, 51(6): 20210442
Category: Lasers & Laser optics
Received: Jul. 2, 2021
Accepted: --
Published Online: Dec. 20, 2022
The Author Email: Zhigang Peng (pzg@bjut.edu.cn)