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激光烧蚀硅表面的发射光谱分析 被引量:2

Emission Spectrum Analysis of Laser Ablation on the Silicon Surface
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摘要 研究了不同能量的纳秒激光脉冲聚焦到单晶硅片上时,激光等离子体的自由电子密度和温度以及损伤形貌随激光脉冲能量增加的变化规律。研究结果表明:激光脉冲击穿硅介质产生的激光等离子体的体积以及自由电子密度和温度大小,决定了硅表面损伤的形貌特点和大小。自由电子密度和温度的变化特点是:随着激光脉冲能量的增加,激光等离子体的体积不断增大,自由电子温度缓慢增加而密度基本不变。又由于激光等离子体的自由电子密度和温度呈现从中心到边缘由大到小的变化趋势,所以损伤形貌总的特点是内部区域的熔化非常充分,形成明显的周期性排列的规则条纹,且条纹的排列趋势呈现环状;中部区域熔化不充分,形成条纹不很规则;边缘区域处分界明显,有时出现等离子体产生喷溅变色痕迹。 The free electron density and temperature of laser-induced plasma and the damage on the silicon surface were investigated. The results show that the volume and the free electron density of laser induced plasma, as well as the plasma temperature will determine the profile and the size of silicon superficial damage. It was also found that the volume of laser plasma will increase continuously and the temperature will increase slightly with the increase in the energy of laser pulse, while the density of free electrons will remain invariable. The free electron density and the temperature reduce gradually from centre to edge, so the damage appearance has the following features: The interior area of damage was melted so well that the periodic stripes were formed. The periodic stripes were quite irregular for the area not melted very well. The boundary of damage is apparent and sometimes color changes induced by plasma spattering were observed.
出处 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2009年第4期869-873,共5页 Spectroscopy and Spectral Analysis
基金 国家自然科学基金项目(10676023) 固体激光国家级重点实验室基金项目资助
关键词 激光等离子体 光谱分析 单晶硅 电子密度 电子温度 Laser-induced plasma Spectrum analysis Monocrystalline silicon Electron density Electron temperature
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参考文献27

  • 1Meyand R G, A F. Phys. Rev. Lett. , 1963, 11: 401.
  • 2Yablonovitch E, Bloembergen N. Phys. Rev. Lett. , 1972, 29: 907.
  • 3Davis M, Miura K, Sugimoto N, et al. Opt. Lett. , 1996, 21(21): 1729.
  • 4Stuart BC, Feit M D, Herman S, et al. Phys. Rev. B, 1996, 53: 1749.
  • 5Carr C W, Radousky H B, Rubenchik A M, et al. Phys. Rev. Lett. , 2004, 92: 087401.
  • 6Rainer A J, DeMarco F, Gonzales F P, et al. SPIE, 1993, 2114: 9.
  • 7Grinberg A A, Mekhitiev R F, Pyvkin S M, et al. Sov. Phys-Solid State, 1967,9(5): 1085.
  • 8Sreekowic M, Vedlin B, Backovic N. Optics and Laser Technology, 1984, 16(3): 145.
  • 9Liu P L, Yen R, Bloembergen, et al. Appl.Phys. Lett., 1979, 34(12):864.
  • 10Walser R M, Becker M F, Ambrose J G, et al. Laser and Electron-Beam Solid Interactions and Materials Processing. New York: Elsevier, 1981.

二级参考文献37

  • 1林兆祥,吴金泉,龚顺生.延迟双脉冲激光产生的空气等离子体的光谱研究[J].物理学报,2006,55(11):5892-5898. 被引量:14
  • 2戴阳,林兆祥,张文艳,程学武,李发泉,宋述燕,龚顺生.激光雷达大气湍流测量方法研究[J].强激光与粒子束,2006,18(11):1769-1773. 被引量:7
  • 3Meyand R G and Haught A F. Phys. Rev. Lett., 1963,11:401.
  • 4Wegl G M. in Laser-induced Plasma and Applications, Radziemski L J and Cremers D A, Ed. New York: Marcel Dekker, Inc., 1989,1.
  • 5B La Fontaine et al. IEEE Tram. Plas. Sci., 1999,27: 688.
  • 6Radziemski LJ et al. Anal. Chem.. 1983, 55: 1246.
  • 7Preiedhorsky Wet al. Phys. Rev. Lett., 1981,47:1661.
  • 8Shigemorietal K. Phys. Rev. Lett. , 2000,84:5331.
  • 9Keeler D, Jeng S M and Welle R. Acta Astronautica, 1987, 15: 367.
  • 10David W and Saum K A. J. Appl. Phys., 1973,44:5328.

共引文献34

同被引文献28

  • 1邓蕴沛,贾天卿,冷雨欣,陆海鹤,李儒新,徐至展.飞秒激光烧蚀石英玻璃的实验与理论研究[J].物理学报,2004,53(7):2216-2220. 被引量:21
  • 2王公堂,王象泰,满宝元,许炳章,梅良模.激光烧蚀铝靶生成空气等离子体的机理[J].原子与分子物理学报,1996,13(2):163-169. 被引量:7
  • 3Kumar A,Yueh F U,Singh J P,et al.Appl.Opt.,2004,43(28):5399.
  • 4Matth Ieub,Laurent G,Jin Y,et al.Applied Physics Letters,2006,88(6):06 3901(123).
  • 5Carmona N,Oujja M,Gaspard S,et al.Spectrochimica Acta Part B,2007,62:94.
  • 6Jorge E,Carranza A,Emily Gibb,et al.Applied Optics,2003,42(30):6016.
  • 7Knight Andrew K,Seherbarth Nancy L,Cremers David A,et al.Applied Spectroscopy,2000,54(3):331.
  • 8Gabalin L M,Romero D,Garcia C C,et al.Analytical and Bioanalytical Chemistry,2002,372(2):252.
  • 9Zhao Y,Zhang N,Yang J,et al.Applied Physics Letters,2006,88(24):1102.
  • 10Matth Ieub,Laurent G,Jin Y,et al.Journal of Applied Physics,2006,99(8):084701.

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