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Optical Emission Spectroscopy for Studying Fe Plasma Parameters Produced by Exploding Wire Technique in Carbon Nanotubes - Water Colloid
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This study investigates the plasma parameters of iron (Fe) plasma produced via the electro-exploding wire (EEW) technique immersed in a carbon nanotube-water colloid at discharge currents of 50, 100, and 150 A. Using optical emission spectroscopy (OES), Boltzmann plots, and Stark broadening analysis, the authors determined key plasma characteristics including electron temperature, electron density, Debye length, plasma frequency, and Debye number. The results demonstrate that increasing the applied discharge current increases the plasma emission intensity, electron temperature, and electron density.
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Page 1 of 7
Page 1 - Title, Authors, Abstract, and Introduction
Iraqi Journal of Science, 2022, Vol. 63, No. 1, pp: 163-169
DOI: 10.24996/ijs.2022.63.1.17
ISSN: 0067-2904
Optical Emission Spectroscopy for Studying Fe Plasma Parameters Produced by Exploding Wire Technique in Carbon Nanotubes - Water Colloid
Sabah M. Fathi*, Saba J. Kadhim
Department of physics, College of Science, University of Baghdad, Baghdad, Iraq
*Email: [email protected]
Received: 12/1/2021 Accepted: 24/3/2021
Abstract
The goal of this work is to study plasma parameters for Fe plasma generated by exploding wire (EEW) in carbon nanotubes-water colloid with three current values (50, 100 and 150)A. In this research, the plasma electron temperature (Te), the electron density (ne), plasma frequency(fp), Debye length (λD) and Debye number (ND) were found for Fe produced by Arc discharge plasma. Boltzmann plot was used to calculate the plasma electron temperature (Te); electron density (ne) was calculated from Stark broadening. It was found that the electron temperature values increased from (0.4134 - 0.415) eV and the electron density increased from (0.93 - 1.16) × 10^17 cm^-3.
Keywords: Fe plasma, explosive wire, plasma diagnostic, Boltzmann plot, Plasma parameters.
التحليل الطيفي للانبعاثات الضوئية لدراسة معلمات بلازما الحديد المنتجة بتقنية الأسلاك المتفجرة في عالق من أنابيب الكربون النانوية والماء
صباح محمد*، صبا جواد
قسم الفيزياء، كلية العلوم، جامعة بغداد، بغداد، العراق
الخلاصة
الهدف هو دراسة معلمات البلازما للحديد المتولدة عن طريق تقنية تفجير الأسلاك في عالق من أنابيب الكربون النانوية والماء بثلاث قيم للتيار (50 ، 100 ، 150) أمبير. في هذا البحث تم ايجاد درجة حرارة الإلكترون في البلازما (Te)، وكثافة الإلكترون (ne)، وتردد البلازما (fp)، وطول ديباي (λD) ورقم ديباي (ND) للحديد الناتج عن بلازما التفريغ القوسي. تم استخدام مخطط Boltzmann لحساب درجة حرارة الإلكترون في البلازما (Te)، وتم حساب كثافة الإلكترون (ne) عن طريق توسيع Stark. تزداد قيمة درجة حرارة الإلكترون من (0.4134 - 0.415) eV وترتفع كثافة الإلكترون من (0.93 - 1.16) × 10^17 cm^-3.
Introduction
Plasma physicists have commonly used the phenomenon of exploded wires (electro explosion of wires or EEW) for the generation and containment of plasma. Several parameters such as voltage, current pulse, material type, wire dimensions, the medium in which the explosion is performed, etc. control the entire process.
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This study investigates the plasma parameters of iron (Fe) plasma produced via the electro-exploding wire (EEW) technique immersed in a carbon nanotube-water colloid at discharge currents of 50, 100, and 150 A. Using optical emission spectroscopy (OES), Boltzmann plots, and Stark broadening analysis...