强激光与粒子束, 2020, 32 (1): 011010, 网络出版: 2020-03-31   

水冷10 Hz Yb:YAG激光放大器热管理

Thermal management of water-cooled 10 Hz Yb:YAG laser amplifier
作者单位
1 中国工程物理研究院 激光聚变研究中心,四川 绵阳 621900;中国工程物理研究院 高能激光科学与技术重点实验室,四川 绵阳 621900;中国工程物理研究院 研究生院,北京 100088
2 中国工程物理研究院 激光聚变研究中心,四川 绵阳 621900;中国工程物理研究院 高能激光科学与技术重点实验室,四川 绵阳 621900
3 中国工程物理研究院 激光聚变研究中心,四川 绵阳 621900
引用该论文

蒋新颖, 王振国, 郑建刚, 严雄伟, 李敏, 张雄军, 粟敬钦, 朱启华, 郑万国. 水冷10 Hz Yb:YAG激光放大器热管理[J]. 强激光与粒子束, 2020, 32(1): 011010.

Xinying Jiang, Zhenguo Wang, Jiangang Zheng, Xiongwei Yan, Min Li, Xiongjun Zhang, Jingqin Su, Qihua Zhu, Wanguo Zheng. Thermal management of water-cooled 10 Hz Yb:YAG laser amplifier[J]. High Power Laser and Particle Beams, 2020, 32(1): 011010.

参考文献

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[3] Bayramian A, Armstrong P, Ault E, et al. The Mercury project: A high average power, gas-cooled laser for inertial fusion energy development[J]. Fus Sci Technol, 2007, 52: 383-387.

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[6] Marrazzo S, Gonçalvès-Novo T, Millet F, et al. Low temperature diode pumped active mirror Yb3+: YAG disk laser amplifier studies[J]. Optics Express, 2016, 24(12): 12651-12660.

[7] Mason P, Divoký M, Butcher T, et al. Commissioning of a kWclass nanosecond pulsed DPSSL operating at 105 J, 10 Hz [C]Proceedings of the SPIE. 2017: 102380H.

[8] Iyama K, Tokita S, Kawashim T, et al. Development of subns, 1 J Yb: YAG TRAM multipass amplifier[C]HECDPSSL. 2017.

[9] Kabeya Y, Mita T, Hatano Y, et al. Development of a 10J, 10Hz laser amplifier system with cryocooled Yb: YAG ceramics using activemirr method [C]Proc of SPIE. 2019: 108960M.

[10] Han Chi, Baumgarten C M, Jankowska E, et al. Thermal behavior characterization of a kilowatt-power-level cryogenically cooled Yb: YAG active mirror laser amplifier[J]. Journal of the Optical Society of America B, 2019, 36(4): 1084-1090.

[11] Liu Tinghao, Sui Zhan, Chen Lin, et al. 12 J, 10 Hz diode-pumped Nd: YAG distributed active mirror amplifier chain with ASE suppression[J]. Optics Express, 2017, 25(18): 21981-21992.

[12] Zheng Jiangang, Jiang Xinying, Yan Xiongwei, et al. Progress of the 10 J water-cooled Yb: YAG laser system in RCLF[J]. High Power Laser Science and Engineering, 2014, 2: e27.

[13] Jiang Xinying, Yan Xiongwei, Wang Zhenguo, et al. Influence of thermal reduced depolarization on a repetition-frequency laser amplifier and compensation[J]. High Power Laser Science and Engineering, 2015, 3: e9.

蒋新颖, 王振国, 郑建刚, 严雄伟, 李敏, 张雄军, 粟敬钦, 朱启华, 郑万国. 水冷10 Hz Yb:YAG激光放大器热管理[J]. 强激光与粒子束, 2020, 32(1): 011010. Xinying Jiang, Zhenguo Wang, Jiangang Zheng, Xiongwei Yan, Min Li, Xiongjun Zhang, Jingqin Su, Qihua Zhu, Wanguo Zheng. Thermal management of water-cooled 10 Hz Yb:YAG laser amplifier[J]. High Power Laser and Particle Beams, 2020, 32(1): 011010.

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