Magnetic-Field-Confined Laser Induced Kohl Plasma: Elemental Analysis and Plasma Characterization

激光诱导击穿光谱 等离子体 分析化学(期刊) 激光器 化学 发射光谱 光谱学 原子物理学 谱线 材料科学 光学 物理 氧化物 有机化学 天文 量子力学 色谱法
作者
Saba Mushtaq,K. Siraj,Muhammad Shahzad Abdul Rahim,Sami Ul Haq,Qaneeta Younas,Waqas Asad,Nimra Shahzad,A. Latif
出处
期刊:Applied Spectroscopy [SAGE Publishing]
卷期号:77 (4): 393-404 被引量:3
标识
DOI:10.1177/00037028231153405
摘要

In this study, the laser-induced kohl plasma is produced in the vicinity of the transverse magnetic field (B) of 0.8 T. A Q-switched neodymium-doped yttrium aluminum garnet (Nd:YAG) pulse laser (λ = 1064 nm, E = 100 mJ, τl = 8 ns) is focused to produce the kohl plasma with and without a B, and the plasma emissions are recorded using a laser-induced breakdown spectroscopy (LIBS) spectrometer. The comparison of the emission spectra shows that most of the emission line intensities are reduced due to the field. However, except for a few lines which are enhanced up to three times. However, the plasma parameters such as electron temperature (Te), electron number density (Ne), and plasma frequency (ʋp) have been increased. Furthermore, thermal beta (βt) is also estimated analytically, and its value is smaller than one (β < 1) for all samples, which confirmed the evidence of magnetic confinement effects. According to the analysis of the kohl emission spectrum, several elements were detected (Pb, Ca, Mg, Fe, Cr, and Zn), among which lead (Pb) and chromium (Cr) may cause chronic health effects like contact dermatitis and neurological diseases. A calibration-free LIBS (CF-LIBS) method is used for the quantitative elemental analysis of the detected elements, which yields Pb as 15-74% and Cr as 3%, which exceed the permissible limit for kohl.

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