首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Experimental and theoretical studies of Stark profiles of Ar I 696.5 nm spectral line in laser-induced plasma
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Experimental and theoretical studies of Stark profiles of Ar I 696.5 nm spectral line in laser-induced plasma

机译:激光诱导等离子体中AR I 696.5 NM光谱线STARK谱的实验与理论研究

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We report the results of the Stark profile studies of the 696.543 nm Ar I spectral line in laser-induced plasma generated by a nanosecond Nd:YAG laser radiation at 532 nm in argon at reduced pressure. Plasma diagnostics was performed with the use of the laser Thomson scattering method, free from assumptions about the plasma thermodynamic equilibrium, its composition but also independently of plasma emission spectra. The profiles were investigated in wide range of electron densities and temperatures, from 2.81.10(22) m(-3) to 5.69.10(23) m(-3) and from 10 430 K to 73 400 K, respectively. Stark profiles were calculated using a semi-classical method as well as by N-body numerical simulations assuming a plasma in local thermodynamic equilibrium. Our studies show agreement within 20% between experimental Stark widths and those calculated by the semi-classical method while much bigger discrepancies were found with computer simulated ones. Importantly, Stark profiles of the investigated spectral line, both experimentally determined and computed, are highly sensitive to electron temperature. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们报道了由纳秒Nd:YAG激光辐射产生的激光诱导等离子体中的696.543nm AR I光谱线的STARK轮廓研究结果在减压下在532nm处产生532nm。通过使用激光汤姆森散射方法进行等离子体诊断,没有关于等离子体热力学平衡的假设,其组合物也独立于等离子体发射光谱。在宽范围的电子密度和温度范围内研究曲线,从2.81.10(22)(-3)至5.69.10(23)m(-3)和10 430k至73 400k。使用半古典方法以及假设局部热力学平衡等离子体的N体数值模拟来计算STARK型材。我们的研究表明,实验性缺点宽度与半古典方法计算的那些之间的协议,而计算机模拟的实验性迹象宽度和半古典方法计算的那些。重要的是,实验确定和计算的研究光谱线的STARK轮廓对电子温度非常敏感。 (c)2019年elestvier有限公司保留所有权利。

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