期刊文献+

用蒙特-卡罗模型模拟金等离子体光谱 被引量:2

THE SPECTRA OF Y-LIKE AND Zr-LIKE Au IN Au PLASMAS CALCULATED BY THE MONTE CARLO MODEL
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摘要 在局部热动平衡条件下 ,用 Monte-Carlo模型计算 Au等离子体中的复杂光谱。阐述了两种耦合 (中间耦合和 L-S耦合 )条件下的 Monte-Carlo理论模型 ,并给出了类钇金、类锆金的光谱。 Under local thermodynamic equilibrium conditions(LTE), the Monte Carlo model is used to calculate the spectra of Y like and Zr like Au ions in the plasmas. The main point of Monte Carlo model is simulating lines of unresolved transition arrays by assign a random energy and strength to each line, it is then given an assumed Gaussian shape. and added to a plot of the spectrum.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2000年第2期185-187,共3页 High Power Laser and Particle Beams
基金 国防科技重点实验室基金资助课题!( 98JS77.2 .1ZS770 2 )
关键词 金等离子体 光谱 Monte-Carlo模型 Monte Carlo model Au plasmas opacity
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参考文献9

  • 1Bauche J,Bauche-Arnoult C.Level and line statistics in atomic spectra[].Journal of Physics B Atomic Molecular and Optical Physics.1987
  • 2Froese-Fischer C.Multiconfiguration Hartree-Fock program for atomic calculation[].Computer Physics Communications.1978
  • 3Bauche J,Bauche-Arnoult C,Wyart J F.Simulation of atomic transition arrays for opacity calculations[].Physical Review.1991
  • 4Kucas S,Jonauskas V,Karazija R.Global characteristics of atomic spectra and their use for the analysis of spectra(Ⅱ)[].Physica Scripta.1995
  • 5Kucas S,Karazija R.Global characteristics of atomic spectra and their use for the analysis of spectra (Ⅰ)[].Physica Scripta.1993
  • 6Bauche J,Bauche-Arnoult C,Klapisch M.Transition arrays in the spectra of ionized atoms[].Advances in Atomic Molecular and Optical Physics.1987
  • 7Bauche-Arnoult C,Bauche J,Klapisch M.Unresolved transition arrays[].Physical Review.1982
  • 8Duffy P,Klapisch M,Bauche J,et al.Monte-Carlo simulation of complex spectra for opacity calculations[].Physical Review.1991
  • 9Bauche-Arnoult C,Bauche J,Klapisch M.Variance of the distributions of energy levels and of the transition arrays in atomic spectra[].Physical Review.1979

同被引文献14

  • 1Sun G, Dobeli M, Muller A M, et al. Energy loss and straggling of heavy ions in silicon nitride in the low MeV energy range[JJ. Nucl In strum Meth in Phys Res, 2007, B256:586-590.
  • 2Mangiarotti A, Lopes M I, Benabderrahmane M L, et al. A survey of energy loss calculations for heavy ions between 1 and 100 keVJj Nucl Instrum Meth in Phys Res, 2007, A580 : 114-117.
  • 3Liu J, Lennard W N, Lee J K. Range of Er ions in amorphous Si[J]. Applied Surface Science, 2006, 253: 937-943.
  • 4Amekura H, Plaksin O A, Umeda N, et al. Concentration profiles of Zn ions implanted with 60 keV for nanoparticle formation in silica glass [J].Vacuum, 2006, 80:802 805.
  • 5Ziegler J F, Biersack J P, Ziegler M D. Particle interactions with matterDB/OL, www. srim. org,2008.
  • 6Miyagawa Y, Miyagawa S. Computer simulation of ion beam penetration in amorphous target[J. JAppl Phys, 1983, S4(12):7124- 7131.
  • 7Haggmark L G, Wilson W D. A new program for ion implantation by Monte Carlo methodsEJ]. J Nucl Mater, 1978, 14976-77.
  • 8Tian X B, Kwok D T K, Cbu P K. Modeling of incident particle energy distribution in plasma immersion ion imp|antationJ. J Appl Phys, 2000,88(9) :4961-4966.
  • 9Tian X B, Peng P, Chu P K. Numerieal simulation of plasma implanted nitrogen depth profiles in iron,J]. Nucl Instrum Meth in Phys Res, 2003,B206:673-676.
  • 10吴丹.氩离子等离子体源离子注入的数值模拟[J].湖南文理学院学报(自然科学版),2008,20(1):35-38. 被引量:1

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