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Spatial characterization of the laser-induced plasma plumes generated by IR CO2 pulsed laser on carbon targets

机译:IR CO2脉冲激光在碳靶上产生的激光诱导等离子体羽的空间表征

摘要

Spatially resolved optical emission analysis was carried out for the plasma plume, produced by high-power tunable IR CO2 pulsed laser ablation of graphite, at λ=9.621 μm and with laser fluence of 342 J∈cm-2. Wavelength-dispersed spectra of the plume, at medium vacuum conditions (P air=4 Pa) and concentrated close to the target, reveal C, C+, C2+, C3+, C4+, N, H, O, and molecular emissions between different electronic states of C2, CN, OH, CH, and NH. The characteristics of the spectral emission intensities from different species have been investigated as functions of the distance (up to 20 cm) from the sample surface. Vibrational temperatures in the laser-induced plasma have been estimated at various distances from the target surface. © 2008 Springer-Verlag.
机译:对等离子体羽流进行了空间分辨的光发射分析,等离子体羽流是由大功率可调谐IR CO2脉冲激光烧蚀石墨产生的,λ= 9.621μm,激光通量为342J∈cm-2。在中等真空条件下(P air = 4 Pa)并接近目标浓度聚集的羽流的波长分散光谱显示C,C +,C2 +,C3 +,C4 +,N,H,O和不同电子态之间的分子发射C2,CN,OH,CH和NH已经研究了不同物种的光谱发射强度的特征,该特征是与样品表面的距离(最大20 cm)的函数。激光诱导等离子体中的振动温度已在距目标表面各种距离的位置进行了估算。 ©2008 Springer-Verlag。

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