激光与光电子学进展, 2015, 52 (8): 080005, 网络出版: 2015-07-29   

欧洲HiPER项目激光驱动器概念设计研究现状 下载: 727次

Research Status of Conceptual Designs of Diode-Pumped Solid-State Laser Driver for HiPER
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
2 中国工程物理研究院研究生部, 北京 100088
引用该论文

肖凯博, 袁晓东, 蒋新颖, 严雄伟, 王振国, 李明中, 郑建刚, 郑万国. 欧洲HiPER项目激光驱动器概念设计研究现状[J]. 激光与光电子学进展, 2015, 52(8): 080005.

Xiao Kaibo, Yuan Xiaodong, Jiang Xinying, Yan Xiongwei, Wang Zhenguo, Li Mingzhong, Zheng Jiangang, Zheng Wanguo. Research Status of Conceptual Designs of Diode-Pumped Solid-State Laser Driver for HiPER[J]. Laser & Optoelectronics Progress, 2015, 52(8): 080005.

参考文献

[1] M J Edwards,P K Patel,J D Lindl,et al..Progress towards ignition on the national ignition facility [J].Physics of Plasmas,2013,20(7):1.

[2] J L Miquel,C Lion,P Vivini.The LMJ program:Overview and status of LMJ & PETAL projects[C].CLEO:2013,ATu1M.4.

[3] Yanqi Gao,Weixin Ma,Baoqiang Zhu,et al..Status of the SG- II- UP laser facility[C].IEEE Photonics Conference(IPS),2013:73-74.

[4] 郭爱林,朱海东,杨泽平,等.神光II 升级装置波前传输计算模型与验证[J].光学学报,2013,33(2):0214001.

    Guo Ailin,Zhu Haidong,Yang Zeping,et al..Wavefront propagation modeling and verification of the SG- II Updated laser facility[J].Acta Optica Sinica,2013,33(2):0214001.

[5] 周洋,邵平,赵东峰,等.神光II 升级装置纳秒靶瞄准定位技术研究[J].中国激光,2014,41(12):1208002.

    Zhou Yang,Shao Ping,Zhao Dongfeng,et al..Research on the system of the nanosecond target aiming and positioning of the SG-II Updated laser facility[J].Chinese J lasers,2014,41(12):1208002.

[6] Wanguo Zheng,Xiaomin Zhang,Xiaofeng Wei,et al..Status of the SG- III solid- state laser facility [J].Journal of Physics:Conference series,2008,112(3):032009.

[7] 彭晓世,王峰,杨冬,等.神光III 原型背向散射光特性研究[J].光学学报,2014,34(3):0314004.

    Peng Xiaoshi,Wang Feng,Yang Dong,et al..Characteristics study of the backscattering light on Shenguang- III prototype[J].Acta Optica Sinica,2014,34(3):0314004.

[8] 温圣林,颜浩,张远航,等.波前畸变下连续相位板焦斑的计算与实验[J].光学学报,2014,34(3):0314001.

    Wen Shenglin,Yan Hao,Zhang Yuanhang,et al..Calculation and experiment of the focal spot caused by continuous phase plate with wavefront distortion[J].Acta Optica Sinica,2014,34(3):0314001.

[9] E I Moses,TN Collaborators.The national ignition campaign:status and progress[J].Nuclear Fusion,2013,53(10):104020-104024.

[10] E Moses,T D Rubia,E Storm,et al..A sustainable nuclear fuel cycle based on laser inertial fusion energy[R].LLNLCONF-413798,2009.

[11] M Dunne.A high-power laser fusion facility for Europe[J].Nat Phys,2006,2(1):2-5.

[12] Y Kozaki.Power plant concepts and chamber issues for fast ignition direct- drive targets[J].Fusion Science and Technology,2006,49(3):542-552.

[13] J C Chanteloup,D Albach,A Lucianetti,et al..Multi kJ level laser concepts for HiPER facility[C].The Sixth International Conference on Inertial Fusion Sciences and Applications,2010,244(1):012010.

[14] B L Garrec,S Atzeni,D Batani,et al..HiPER laser:from capsule design to the laser reference design[C].SPIE,2011,7916:79160F.

[15] B L Garrec,M Novaro,M Tyldesley,et al..HiPER laser reference design[C].SPIE,2011,8080(1):289-293.

[16] B L Garrec,C Hernandez- Gomez,T Winstone,et al..HiPER laser architecture principles[C].The Sixth International Conference on Inertial Fusion Sciences and Applications,2010,244(3):032020.

[17] S Banerjee,K Ertel,P D Mason,et al..High- efficiency 10 J diode pumped cryogenic gas cooled Yb:YAG multislab amplifier[J] Opt Lett,2012,37(12):2175-2177.

[18] T Goncalves- Novo,D Albach,B Vincent,et al..14 J/2 Hz Yb3+∶YAG diode pumped solid state laser chain[J].Opt Express,2013,21(1):855-866.

[19] A Kessler,M Hornung,S Keppler,et al..16.6 J chirped femtosecond laser pulses from a diode- pumped Yb:CaF2 amplifier[J].Opt Lett,2014,39(6):1333-1336.

[20] K Ertel,C Hernandez- Gomez,P D Mason,et al..Concept for Cryogenic kJ- Class Yb∶YAG Amplifier[C].Lasers,Sources and Related Photonic Devices,2010:AWB20.

[21] P D Mason,K Ertel,S Banerjee,et al..Optimised Design for a 1 kJ Diode Pumped Solid State Laser System[C].SPIE,2011,8080:80801X.

[22] K Ertel,S Banerjee,C Hernandez-Gomez,et al..Performance modelling of a 1 kJ DPSSL system [C].OSA Proceedings of Topical Meeting on High-Intensity Lasers and High-Field Phenomena (HILAS),2011.

[23] J C Chanteloup,A Lucianetti,D Albach,et al..Overview of the LULI diode-pumped laser chain proposal for HIPER kJ beamlines[C].SPIE,2011,8080:80801W.

[24] J C Chanteloup,A Lucianetti,D Albach,et al..Low pressure helium cooled active mirror amplifiers for HiPER kilojoule beamlines[J].Plasma and Fusion Research,2013,59(1):218-228.

[25] A Lucianetti,D Albach,J C Chanteloup.Active- mirror- laser- amplifier thermal management with tunable helium pressure at cryogenic temperatures[J].Opt Express,2011,19(13):12766-12780.

[26] D Albach,J C Chanteloup,G l Touzé.Influence of ASE on the gain distribution in large size,high gain Yb3 +∶YAG slabs [J].Opt Express,2009,17(5):3792-3801.

[27] J C Chanteloup,D Albach,G Bourdet,et al..Impact of variable doped gain medium on HiPER multiple kJ/~10 Hz diode pumped beam lines design[C].Advanced Solid-State Photonics,2009.

[28] C Edwards,F Amiranoff.HiPER:The European path to laser energy[C].EPJ Web of Conferences,2013,59:01006.

肖凯博, 袁晓东, 蒋新颖, 严雄伟, 王振国, 李明中, 郑建刚, 郑万国. 欧洲HiPER项目激光驱动器概念设计研究现状[J]. 激光与光电子学进展, 2015, 52(8): 080005. Xiao Kaibo, Yuan Xiaodong, Jiang Xinying, Yan Xiongwei, Wang Zhenguo, Li Mingzhong, Zheng Jiangang, Zheng Wanguo. Research Status of Conceptual Designs of Diode-Pumped Solid-State Laser Driver for HiPER[J]. Laser & Optoelectronics Progress, 2015, 52(8): 080005.

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