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Emission Spectra Investigation Of Fs Induced Nps Probed By The Ns Laser Pulse Of A Fss Dp-libs Orthogonal Configuration

机译:Fs / ns Dp-libs正交构型的Ns激光脉冲探测的Fs诱导Nps的发射光谱研究

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A dual-pulse fss laser induced breakdown spectroscopy configuration, where an initial 250 fs ablating pulsed laser followed by a delayed ns laser beam placed at a fixed distance, orthogonally with the expanding plasma plume, has been used in air on a Al_(65)Cu_(23)Fe_(12)quasicrystal. The obtained emission data were acquired with a set-up arrangement providing space detections, with a resolution up to 15 μm, of the ns laser pulse generated signals. Assuming the fulfillment of local thermodynamic equilibrium conditions, the role played by the time lag between the two laser beams on the induced plasma excitation temperatures and electronic densities, as well as a space resolved process survey, has been followed. The spatial and time resolved spectra show, almost, steady values of the determined elementary plasma features with the development of nanoparticles occurring during the fs laser pulsed ablation process. The ns laser probe of the dual-pulse LIBS configuration here presented confirms that the nanoparticles induced can be largely widespread in both space and time whose compositions, overall, could retain the starting target stoichiometry. It is shown that these nanoparticles formation can actually take place at different times following the initial ultra-short laser beam incidence and that, especially at long inter-pulse delays (>100 μs), modest compositional changes can be observed.
机译:双脉冲fs / ns激光诱导击穿光谱结构,其中最初的250 fs烧蚀脉冲激光随后是与膨胀的等离子羽流正交放置在固定距离的延迟ns激光束,已用于空气中的Al 65)Cu(23)Fe_(12)准晶体。所获得的发射数据是通过设置装置获取的,该装置提供了ns激光脉冲生成信号的分辨率高达15μm的空间检测。假定满足局部热力学平衡条件,则遵循了两个激光束之间的时间滞后对诱导的等离子体激发温度和电子密度以及空间分辨过程调查所起的作用。空间和时间分辨光谱显示,在fs激光脉冲烧蚀过程中,随着纳米颗粒的发展,所确定的基本等离子体特征几乎保持稳定值。此处介绍的双脉冲LIBS构造的ns激光探针证实,诱导的纳米粒子可以在空间和时间上广泛分布,其组成总体上可以保留起始目标化学计量。结果表明,这些纳米颗粒的形成实际上可以在初始的超短激光束入射之后的不同时间发生,尤其是在较长的脉冲间延迟(> 100μs)时,可以观察到适度的成分变化。

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