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Dynamics of femto- and nanosecond laser ablation plumes investigated using optical emission spectroscopy

机译:飞秒和纳秒激光消融羽流的动力学,使用光发射光谱法进行研究

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摘要

We investigated the spatial and temporal evolution of temperature and electron density associated with femto- and nanosecond laser-produced plasmas (LPP) from brass under similar laser fluence conditions. For producing plasmas, brass targets were ablated in vacuum employing pulses either from a Ti:Sapphire ultrafast laser (40 fs, 800 nm) or from a Nd:YAG laser (6 ns, 1064 nm). Optical emission spectroscopy is used to infer the density and temperature of the plasmas. The electron density (ne) was estimated using Stark broadened profiles of isolated lines while the excitation temperature (Texc) was estimated using the Boltzmann plot method. At similar fluence levels, continuum and ion emission are dominant in ns LPP at early times (<50 ns) followed by atomic emission, while the fs LPP provided an atomic plume throughout its visible emission lifetime. Though both ns and fs laser-plasmas showed similar temperatures (∼1 eV), the fs LPP is found to be significantly denser at shorter distances from the target surface as well as at early phases of its evolution compared to ns LPP. Moreover, the spatial extension of the plume emission in the visible region along the target normal is larger for fs LPP in comparison with ns LPP.
机译:我们研究了在类似的激光通量条件下,与黄铜的飞秒和纳秒激光产生的等离子体(LPP)相关的温度和电子密度的时空变化。为了产生等离子体,使用来自Ti:Sapphire超快激光器(40 fs,800 nm)或来自Nd:YAG激光器(6 ns,1064 nm)的脉冲在真空中烧蚀黄铜靶。使用光发射光谱法来推断等离子体的密度和温度。电子密度(ne)使用孤立线的Stark加宽分布图估算,而激发温度(Texc)使用玻耳兹曼图法估算。在相似的注量水平下,ns LPP的连续谱和离子发射在早期(<50 ns)占主导地位,随后是原子发射,而fs LPP在其可见发射寿命中提供了原子羽流。尽管ns和fs激光等离子体均显示相似的温度(〜1 eV),但与ns LPP相比,发现fs LPP在距目标表面更短的距离以及其演化的早期阶段明显更密。此外,与ns LPP相比,对于fs LPP,沿目标法线的可见区域中的羽状发射的空间扩展更大。

著录项

  • 来源
    《Journal of Applied Physics》 |2012年第9期|p.1-9|共9页
  • 作者单位

    Center for Materials Under Extreme Environment and School of Nuclear Engineering, Purdue University, West Lafayette, Indiana 47907, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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