Semiconductor Optoelectronics, Volume. 46, Issue 4, 680(2025)
Research on Laser Diode End-Pumped High-Power Narrow-Pulse Lasers
[1] [1] Fujita E, Mashiko Y, Asaya S, et al. High power narrow-linewidth linearly-polarized 1 610 nm Er∶ Yb all-fiber MOPA[J]. Optics Express, 2016, 24(23): 26255-26260.
[2] [2] Maleki A, Kavosh Tehrani M, Saghafifar H, et al. A compact diode-pumped pulsed Nd∶ YAG slab laser based on a master oscillator power amplifier configuration[J]. Laser Physics, 2016, 26(2): 025003.
[3] [3] Mousavi N S, Parvin P, Ilchi-Ghazaani M. Modeling of a Q-switched master oscillator power amplifier fiber laser and gain saturation properties[J]. Laser Physics, 2020, 30(8): 085101.
[4] [4] Prez-Serrano A, Vilera M, Javaloyes J, et al. Wavelength jumps and multimode instabilities in integrated master oscillator power amplifiers at 1.5 m: experiments and theory[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2015, 21(6): 1500909.
[5] [5] Tang R X, Duan C L. 10-Hz, 702-mJ, subnanosecond Nd: YAG MOPA laser system[J]. Optical Engineering, 2021, 60(11): 116108.
[12] [12] Zayhowski J J, Dill Iii C. Diode-pumped microchip lasers electro-optically Q switched at high pulse repetition rates[J]. Optics Letters, 1992, 17(17): 1201-1203.
[13] [13] Zayhowski J J, Kelley P L. Optimization of Q-switched lasers[J]. IEEE Journal of Quantum Electronics, 1991, 27(9): 2220-2225.
[14] [14] Elahi P, Morshedi S. The double-end-pumped cubic Nd: YVO4 laser: temperature distribution and thermal stress[J]. Pramana, 2010, 74(1): 67-74.
[15] [15] Shen Y, Gong M, Ji E, et al. Spatial dynamic thermal iteration model for 888 nm end-pumped Nd: YVO4 solid-state laser oscillators and amplifiers[J]. Optics Communications, 2017, 383: 430-440.
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HUANG Zhenhong, CAI Hongchuan, WANG Lei, LI Yeqiu, CUI Jianfeng, DAI Qin. Research on Laser Diode End-Pumped High-Power Narrow-Pulse Lasers[J]. Semiconductor Optoelectronics, 2025, 46(4): 680
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Received: Jun. 4, 2025
Accepted: Sep. 18, 2025
Published Online: Sep. 18, 2025
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