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A spectroscopic study of laser-induced tin-lead plasma: Transition probabilities for spectral lines of Sn I

机译:激光诱导的锡铅等离子体的光谱研究:Sn I光谱线的跃迁概率

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In this paper, we present transition probabilities for 97 spectral lines of Sn 1, corresponding to transitions n (n = 6,7,8)s→5p~2, n(n = 5,6,7)d→5p~2, 5p~3→5p~2, n(n = 7)p→6s, determined by measuring the intensities of the emission lines of a Laser-induced breakdown (emission) spectrometry (LIBS). The optical emission spectroscopy from a laser-induced plasma generated by a 10 640 A radiation, with an irradiance of 1.4x10~(10) Wcm~(-2) on an Sn-Pb alloy (an Sn content of approximately 20%), in vacuum, was recorded at 0.8 us, and analysed between 1900 and 7000 A. The population-level distribution and corresponding temperature were obtained using Boltzmann plots. The electron density of the plasma was determined using well-known Stark broadening parameters of spectral lines. The plasma under study had an electron temperature of 13,200 K and an electron number density of 2x10~(16)cm~(-3). The experimental relative transition probabilities were put on an absolute scale using the branching ratio method to calculate Sn I multiplet transition probabilities from available radiative lifetime data of their upper states and plotting the Sn I emission spectrum lines on a Boltzmann plot assuming local thermodynamic equilibrium (LTE) to be valid and following Boltzmann's law. The LTE conditions and plasma homogeneity have been checked. Special attention was paid to the possible self-absorption of the different transitions. The experimental results obtained have been compared with the experimental values given by other authors.
机译:在本文中,我们给出了Sn 1的97条谱线的跃迁概率,对应于跃迁n(n = 6,7,8)s→5p〜2,n(n = 5,6,7)d→5p〜2 ,5p〜3→5p〜2,n(n = 7)p→6s,通过测量激光诱导击穿(发射)光谱法(LIBS)的发射谱线强度来确定。在Sn-Pb合金上(Sn含量约为20%),由10 640 A辐射产生的激光诱导等离子体的光发射光谱,其辐照度为1.4x10〜(10)Wcm〜(-2),在真空条件下,以0.8 us进行记录,并在1900至7000 A之间进行分析。使用Boltzmann曲线获得种群水平分布和相应的温度。使用众所周知的光谱线的斯塔克展宽参数来确定等离子体的电子密度。研究中的等离子体的电子温度为13,200 K,电子数密度为2x10〜(16)cm〜(-3)。使用支化比方法将实验的相对跃迁概率置于绝对尺度上,以根据其上层态的可用辐射寿命数据计算Sn I多重跃迁概率,并在假设局部热力学平衡(LTE)的Boltzmann图上绘制Sn I发射谱线)是有效的,并遵循玻耳兹曼定律。已检查LTE条件和血浆均质性。特别注意了不同过渡的可能的自我吸收。将获得的实验结果与其他作者提供的实验值进行了比较。

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