首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Optimization of temporal window for application of calibration free-laser induced breakdown spectroscopy (CF-LIBS) on copper alloys in air employing a single line
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Optimization of temporal window for application of calibration free-laser induced breakdown spectroscopy (CF-LIBS) on copper alloys in air employing a single line

机译:使用单线对空气中的铜合金应用校准自由激光诱导击穿光谱法(CF-LIBS)的时间窗的优化

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In the present work, the transient evolution of laser induced plasmas (LIPs) of three different copper alloys are reported in order to identify the optimum temporal window for the implementation of calibration free laser induced breakdown spectroscopy (CF-LIBS) for quantitative analysis. The laser induced plasma (LIP) is generated on the copper alloys in air by focusing the second harmonic of a Q-switched Nd: YAG laser of pulse width similar to 7 ns and a repetition rate of 1 Hz. From LIBS spectra it is observed that sample 1 (commercial brass) is comprised of copper (Cu) and zinc (Zn) as the major constituent elements along with the trace elements aluminum (Al), iron (Fe), lead (Pb), tin (Sn) and nickel (Ni), while sample 2 is comprised of Cu, Zn and Ni and sample 3 contains only two elements: Cu and Ni. The accuracy of the CF-LIBS technique depends immensely on the validity of local thermodynamic equilibrium (LTE) and the optically thin condition of the plasma. From the temporal evolution of the LIP, the optimum temporal window is identified where LTE as well as the condition of an optically thin plasma hold together. For this, the temporal evolution of the plasma temperature is studied from the emitted atomic copper transitions via a Boltzmann plot and that of the electron density from the Stark-broadened profile of the CuI (510.5 nm) line. The estimated plasma parameters are used in a one line CF-LIBS algorithm to determine the percentage composition of all the elements present in all three samples. Sample 1, comprising seven elements, is studied first at four different laser energies of 25, 50, 75 and 100 mJ. It is observed that the LTE and optically thin condition of the plasma are well satisfied in the optimum temporal window of 2-4 ms with respect to (w.r.t) the incidence of the laser pulse. The relative errors in the estimation of the concentrations of trace elements are at a minimum at 50 mJ compared to those at other energies. So the other two samples are studied at 50 mJ of laser energy only. The CF-LIBS results within this optimum temporal window for all the samples are also found to be in good agreement with the EDX results.
机译:在当前的工作中,报告了三种不同铜合金的激光诱导等离子体(LIP)的瞬态演变,以便确定实施无标定激光诱导击穿光谱法(CF-LIBS)进行定量分析的最佳时间窗口。通过聚焦脉冲宽度类似于7 ns,重复频率为1 Hz的Q开关Nd:YAG激光器的二次谐波,在空气中的铜合金上产生激光诱导的等离子体(LIP)。从LIBS光谱中观察到,样品1(商业黄铜)由铜(Cu)和锌(Zn)作为主要构成元素以及微量元素铝(Al),铁(Fe),铅(Pb),锡(Sn)和镍(Ni),而样品2由Cu,Zn和Ni组成,而样品3仅包含两种元素:Cu和Ni。 CF-LIBS技术的准确性在很大程度上取决于局部热力学平衡(LTE)的有效性以及等离子体的光学稀薄条件。从LIP的时间演变,可以确定LTE和光学薄等离子体的条件结合在一起的最佳时间窗口。为此,从发射的原子铜跃迁通过玻耳兹曼图研究了等离子体温度的时间演化,并从CuI(510.5 nm)线的Stark展宽分布图研究了电子密度的时间演化。估计的血浆参数用于一线CF-LIBS算法中,以确定所有三个样品中所有元素的百分比组成。首先在25、50、75和100 mJ的四种不同激光能量下研究包含七个元素的样品1。观察到,相对于(w.r.t)激光脉冲的入射,在2-4ms的最佳时间窗口中,很好地满足了LTE和等离子体的光学上稀薄的条件。与其他能量相比,痕量元素浓度估算中的相对误差最小为50 mJ。因此,其他两个样本仅在50 mJ的激光能量下进行研究。在所有样本的最佳时间窗口内的CF-LIBS结果也与EDX结果非常吻合。

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