激光与光电子学进展, 2017, 54 (3): 030604, 网络出版: 2017-03-08   

基于随机并行梯度下降算法的脉冲光纤放大器时域特性调控 下载: 531次

Time-Domain Characteristic Regulation of Pulse Fiber Amplifier Based on Stochastic Parallel Gradient Descent Algorithm
蒋敏 1,2,3粟荣涛 1,2,3王小林 1,2,3周朴 1,2,3
作者单位
1 国防科学技术大学光电科学与工程学院, 湖南 长沙 410073
2 高功率光纤激光湖南省协同创新中心, 湖南 长沙 410073
3 高能激光技术湖南省重点实验室, 湖南 长沙 410073
引用该论文

蒋敏, 粟荣涛, 王小林, 周朴. 基于随机并行梯度下降算法的脉冲光纤放大器时域特性调控[J]. 激光与光电子学进展, 2017, 54(3): 030604.

Jiang Min, Su Rongtao, Wang Xiaolin, Zhou Pu. Time-Domain Characteristic Regulation of Pulse Fiber Amplifier Based on Stochastic Parallel Gradient Descent Algorithm[J]. Laser & Optoelectronics Progress, 2017, 54(3): 030604.

参考文献

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[2] Dupriez P, Finot C, Malinowski A, et al. High-power, high repetition rate picosecond and femtosecond sources based on Yb-doped fiber amplification of VECSELs[J]. Optics Express, 2006, 14(21): 9611-9616.

[3] Schimpf D N, Ruchert C, Nodop D, et al. Compensation of pulse-distortion in saturated laser amplifiers[J]. Optics Express, 2008, 16(22): 17637-17646.

[4] Sobon G, Kaczmarek P, Antonczak A, et al. Pulsed dual-stage fiber MOPA source operating at 1550 nm with arbitrarily shaped output pulses[J]. Applied Physics B, 2011, 105(4): 721-727.

[5] Lin D, Alam S U, Malinowski A, et al. Temporally and spatially shaped fully-fiberized ytterbium-doped pulsed MOPA[J]. Laser Physics Letters, 2011, 8(10): 747-753.

[6] Vu K T, Malinowski A, Richardson D J, et al. Adaptive pulse shape control in a diode-seeded nanosecond fiber MOPA system[J]. Optics Express, 2006, 14(23): 10996-11001.

[7] Malinowski A, Vu K T, Chen K K, et al. High power pulsed fiber MOPA system incorporating electro-optic modulator based adaptive pulse shaping[J]. Optics Express, 2009, 17(23): 20927-20937.

[8] Li Z, Heidt A M, Teh P S, et al. High-energy diode-seeded nanosecond 2 μm fiber MOPA systems incorporating active pulse shaping[J]. Optics Letters, 2014, 39(6): 1569-1572.

[9] Vorontsov M A, Sivokon V P. Stochastic parallel-gradient-descent technique for high-resolution wave-front phase-distortion correction[J]. Journal of the Optical Society of America A, 1998, 15(10): 2745-2758.

[10] Lü H, Zhou P, Wang X, et al. Fast and accurate modal decomposition of multimode fiber based on stochastic parallel gradient descent algorithm[J]. Applied Optics, 2013, 52(12): 2905-2908.

[11] 王小林, 周 朴, 马阎星, 等. SPGD算法在光纤激光相干阵列光束控制中的应用[J]. 光学学报, 2010, 30(10): 2874-2878.

    Wang Xiaolin, Zhou Pu, Ma Yanxing, et al. Phase control of coherent fiber laser array using stochastic parallel gradient descent algorithm and its application[J]. Acta Optica Sinica, 2010, 30(10): 2874-2878.

[12] 周 朴, 刘泽金, 王小林, 等. 随机并行梯度下降算法用于光纤激光相干合成的理论与实验研究[J]. 光学学报, 2009, 29(8): 2232-2237.

    Zhou Pu, Liu Zejin, Wang Xiaolin, et al. Theoretical and experimental investigation on coherent beam combining of fiber lasers using SPGD algorithm[J]. Acta Optica Sinica, 2009, 29(8): 2232-2237.

蒋敏, 粟荣涛, 王小林, 周朴. 基于随机并行梯度下降算法的脉冲光纤放大器时域特性调控[J]. 激光与光电子学进展, 2017, 54(3): 030604. Jiang Min, Su Rongtao, Wang Xiaolin, Zhou Pu. Time-Domain Characteristic Regulation of Pulse Fiber Amplifier Based on Stochastic Parallel Gradient Descent Algorithm[J]. Laser & Optoelectronics Progress, 2017, 54(3): 030604.

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