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神光Ⅲ原型受激拉曼与受激布里渊散射份额测量 被引量:11

Energy fraction measurements of stimulated Brillouin scattering and stimulated Raman scattering on Shenguang-Ⅲ prototype laser facility
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摘要 激光注入率测量是黑腔耦合效率测量至关重要的一个环节,主要通过散射光测量来实现。在神光Ⅲ原型激光装置上进行的黑腔物理实验中,利用PIN探头阵列进行了散射光角分布测量。通过拟合分析,发现原型装置上激光等离子体非线性相互作用较神光Ⅱ装置要强,其中受激拉曼份额在10%量级,受激布里渊散射在20%量级。将由此评估的激光靶耦合效率代入辐射温度定标率公式中,得出的辐射温度值与实验中Dante测量值符合较好,说明对参量过程份额的评估具有一定可靠性。 The measurement of the fraction of laser-entrance energy,which is carried out mainly through the measurement of scattering light,is very important in the measurement of coupling efficiency of the hohlraum.The angular distribution of scattering light is measured on the Shenguang-Ⅲ prototype laser facility using the PIN detector array.It is demonstrated that the nonlinear laser plasma interaction,in which the stimulated Raman scattering fraction is about 10% and the stimulated Brillouin scattering about 20%,is stronger than that on Shenguang-Ⅱ laser facility.The laser target coupling efficiency thus evaluated is taken into the formula which describes the radiation temperature scaling law.The calculated radiation temperature agrees well with the experimental Dante results,which indicates that the evaluated energy fraction of back scattering light is reliable.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2010年第8期1891-1895,共5页 High Power Laser and Particle Beams
基金 国家高技术发展计划项目
关键词 激光等离子体 受激布里渊散射 受激拉曼散射 能量耦合效率 laser plasma stimulated Brillouin scattering stimulated Raman scattering energy coupling efficiency
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  • 1王传珂,蒋小华,刘慎业,况龙钰,王哲斌,刘永刚,李三伟,李文洪.2ns,351nm激光黑腔靶受激Raman散射实验研究[J].强激光与粒子束,2006,18(7):1113-1116. 被引量:11
  • 2王文义 粟敬钦 李阳春等.高功率激光功率平衡的数值分析.中国激光,2008,35:73-77.
  • 3John Lindl. Development of the indirect drive approach to inertial confinement fusion and the target physics basis for ignition and gain[J]. Phys. Plasmas. , 1995, 2(11): 3933-4024.
  • 4John Lindl, Peter Amendt, Richard L. Berger et al. The physics basis for ignition using indirect-drive targets on the National Ignition Facility[J].Phys. Plasmas. , 2004, 11(2): 339-491.
  • 5Juan C. Fernandez, Bruno S. Bauer, James A. Cobble et al. Measurements of laser plasma instability relevant to ignition hohlraums[J]. Phys. Plasmas., 1997, 4(5): 1849-1856.
  • 6Froula D. H. , Divol L. , Meezan N. B. et al. Laser beam propagation through inertial confinement fusion hohlraum plasmas [J]. Phys. Plasma. , 2007, 14(5): 055705.
  • 7Stevenson R. M. , Surer L. J. , Oades K. et al. Effects of plasma composition on backscatter, hot electron production, and propagation in underdense plasmas[J]. Phys. Plasma., 2004, 11(5): 2709-2715.
  • 8Froula D. H., Divol L., London R. A. et al. Pushing the limits of plasma length in inertial fusion laser-plasma interaction experiments[J].Phys. Rev. Lett., 2008, 100(1): 015002.
  • 9Hinkel D. E. , Callahan D. A. , Langdon A. B. et al. Analyses of laser-plasma interactions in National Ignition Facility ignition targets[J].Phys. Plasma, 2008, 15(5) : 056314.
  • 10John Lind]. Development of the indirect - drive ap- proach to inertial confinement fusion and the target physics basis for ignition and gain [J]. Phys. Plas- mas,1995, 2(11) :3933-4024.

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