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纳秒激光烧蚀固体靶产生的等离子体在外加横向磁场中膨胀时的温度和密度参数演化 被引量:1

Temporal evolutions of the plasma density and temperature of laser-produced plasma expansion in an external transverse magnetic field
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摘要 利用等离子体光学波段自发光成像、光学光谱和光学探针干涉等诊断手段,观察了纳秒脉冲激光烧蚀固体靶产生的等离子体在外加横向磁场中的膨胀过程.根据实验参数特征建立了简化的磁流体物理模型,结合自发光强度的时间演化,理论计算了等离子体温度和密度参数的时间演化,理论计算结果与实验测量结果基本符合,证实了碰撞磁扩散过程在等离子体演化中发挥了关键作用. The nanosecond laser produced plasma expansion in an external transverse magnetic field is explored by using optical imaging of plasma self-luminescence, optical spectrum and optical interferometry techniques. The plasma displays bifurcation and focusing phenomena in a transverse magnetic field, which is different from the scenarios without external magnetic field significantly. We set up a simplified magnetohydrodynamics model according to the feature of experimental parameters. The theoretical results of the temporal evolutions of the plasma density and the temperature are in good agreement with the experimental results, which confirms the important role of the magnetic diffusion in the plasma evolution.
出处 《物理学报》 SCIE EI CAS CSCD 北大核心 2015年第12期324-330,共7页 Acta Physica Sinica
基金 国家自然科学基金(批准号:11105147 11375197 11475171 11275202)资助的课题~~
关键词 磁化激光等离子体 等离子体自发光成像 光谱诊断 光学干涉 magnetic laser plasma, imaging of plasma self-luminescence, optical spectral diagnosis,optical interferometry
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  • 1Froula D H, Ross J S, Pollock B B, Davis P, James A N, Divol L, Edwards M J, Offenberger A A, Price D, Town R P J, Tynan G R, Glenzer S H 2007 Phys. Rev. Lett. 98 135001.
  • 2Chang P Y, Fiksel G, Hohenberger M, Knauer J P, Betti R, Marshall F J, Meyerhofer D D, Seguin F H, Petrasso R D 2011 Phys. Rev. Lett. 107 035006.
  • 3Vieira J, Martins S F, Pathak V B, Fonseca R A, Mori W B, Silva L O 2011 Phys. Rev. Lett. 106 225001.
  • 4Holkundkar A, Brodin G, Marklund M 2011 Phys. Rev. E 84 036409.
  • 5Harres K, Alber I, Tauschwitz A, Bagnoud V, Daido H, Gunther M, Nurnberg F, Otten A, Schollmeier M, Schutrumpf J, Tampo M, Roth M 2010 Phys. Plasmas 17 023107.
  • 6Ciardi A, Vinci T, Fuchs J, Albertazzi B, Riconda C, Pepin H, Portugall O 2013 Phys. Rev. Lett. 110 025002.
  • 7Dong Q L, Wang S J, Lu Q M, Huang C, Yuan D W, Liu X, Lin X X, Li Y T, Wei H G, Zhong J Y, Shi J R, Jiang S E, Ding Y K, Jiang B B, Du K, He X T, Yu M Y, Liu C S, Wang S, Tang Y J, Zhu J Q, Zhao G, Sheng Z M, Zhang J 2012 Phys. Rev. Lett. 108 215001.
  • 8Zhang Z C, Lu Q M, Dong Q L, Lu S, Huang C, Wu M Y, Sheng Z M, Wang S, Zhang J 2013 Chin. Phys. Lett. 30 045201.
  • 9Patel N D, Pandey P K, Thareja R K 2013 Phys. Plasmas 20 103503.
  • 10Plechaty C, Presura R, Esaulov A A 2013 Phys. Rev. Lett. 111 185002.

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