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粒子模拟激光斜入射边界条件的处理 被引量:1

Boundary Condition for Obliquely Incident Laser in Particle Simulation
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摘要  讨论了电磁场模拟中的非反射边界条件,详细推导了斜入射情况非反射边界条件的有限差分格式,并在粒子模拟程序LARED P上将其实现,同时给出了激光斜入射时的数值模拟结果. Lindman boundary condition is adopted in particle simulation code LARED-P. Using this code, obliquely incident laser propagation in plasma is numerically studied, with enough testing computation, it is convinced that Lindman BC can efficiently diminish wave reflection into simulation area.
出处 《计算物理》 EI CSCD 北大核心 2004年第6期509-514,共6页 Chinese Journal of Computational Physics
基金 国家863惯性约束聚变 国家基础研究项目非线性科学 国家自然科学基金(10335020 10375011) 中国工程物理研究院基金(2000Z0206)资助项目
关键词 边界条件 粒子模拟 激光斜入射 反射 有限差分格式 推导 电磁场 Boundary conditions Finite difference method Lasers Numerical analysis Particle beam dynamics Reflection Waves
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  • 1霍启峰.[D].国防科大研究生院,2001.
  • 2Birdsall K, Langdon A B. Plasma Physics Via Computer Simulation [ M] .McGraw-Hill Book Company, 1991.
  • 3Lindman E L. "Free-space" boundary conditions for time dependent wave equation [J] .J Comput Phys, 1982,47:229.
  • 4Tabak M, Hammer J, Glinsky M E, et al. Ignition and high gain with ultrapowerful lasers[J].Phys Plasmas,1994,1:1626.
  • 5Pukhov A, Meyer-ter-Vehn J.Relativistic magnetic self-channeling of light in near-critical plasma: three-dimensional particle-in-cell simulation[J]. Phys Rev Lett , 1996,76:3975.
  • 6Roth M, Cowan T E,Key M H,et al. Fast ignition by intense laser-accelerated proton beams[J]. Phys Rev Lett, 2001,86:436.
  • 7Sentoku Y, Esirkepov T Z,Mima K, et al. Bursts of superreflected laser light from inhomogeneous plasmas due to the generation of relativistic solitary waves[J]. Phys Rev Lett,1999,83:3434.
  • 8Kaw P K, Sen A,Katsouleas T. Nonlinear 1D laser pulse solitons in a plasma[J].Phys Rev Lett, 1992,68:3172.
  • 9Bulanov S V, Esirkepov T Z,Naumova N M, et al. Solitonlike electromagnetic waves behind a superintense laser pulse in a plasma[J].Phys Rev Lett,1999,82:3440.
  • 10Farina D, Bulanov S V. Relativistic,electromagnetic solitons in the electron-ion plasma[J]. Phys Rev Lett,2001,86:5289.

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  • 1Birdsall C K, Langdon A B. Plasma physics via computer simulation [ M]. New York: Mc-Graw-Hill Book Company, 1991.
  • 2Adams J H Fr. Cosmic ray effects on microelectronics[R]. NRL memorandum report in August, 1981, 25: 4506
  • 3Mayer P, Ramaty R, Webber W R. Cosmic rays-astronomy with energetic particles [J ]. Physics Today, 1974, 27- 23
  • 4Raineri V, Cacciato A, Benyach F, et al. High energy P implants in silicon [ J ]. Nucl. Instrum. Methods Phys. Res. B, 1992, 62:331
  • 5Galvagno G, Raineri V, Setola R, et al. MeV P implants in silicon: experiments and simulation[J]. Nucl. Instrum. Methods Phys. Res. B, 1992 , 67:476
  • 6Ziegler J F, Biersack J P, Littmark U. The stopping and range of ions in solids [M]. New York: Yorktown, 1985.
  • 7Biersack J P, Haggmark L G. A Monte Carlo Computer program for the transport of energetic ions in amorphous targets[J]. Nucl. Instr. Meth., 1980, 174:257

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