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Electron vortexes in two-dimensional steady photoplasma
Faculty
Engineering
Year:
2022
Type of Publication:
ZU Hosted
Pages:
Pages 69-75
Authors:
Mohamed Mahsoub Mahsoub Mahsoub Mandur
Staff Zu Site
Abstract In Staff Site
Journal:
Chinese Journal of Physics ElsevierB.V.
Volume:
Volume 75
Keywords :
Electron vortexes , two-dimensional steady photoplasma
Abstract:
This paper reports the new phenomenon – the presence of electron vortexes in steadily generated two-dimensional photoplasma. A fluid model of a two-chamber photoplasma cell with sodium vapor and Argon as a buffer gas has been conducted in this study. The excitation source is in the first (driver) chamber. The transport processes of the generated plasma from the first into the second (diffusion) chamber create an electromotive force (EMF), which is the potential difference between them. It is shown that, in the two-chamber photoplasma, along with the flows of classical ambipolar diffusion, vortex currents of electrons are also formed. The change in temperature and electron density caused by them could affect the potential difference between the two chambers. The dependence of the current vortices and, consequently, the generated EMF on the buffer gas pressure is shown.
Author Related Publications
Mohamed Mahsoub Mahsoub Mahsoub Mandur, "2-D Simulation of Two-Chamber Photoplasma for Conversion of Light Radiation to Electrical Energy", IEEE, 2020
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Mohamed Mahsoub Mahsoub Mahsoub Mandur, "Optimization of Photoelectric Converter Based on a Two-Chamber Na–Ar Gas Photoplasma", IEEE, 2020
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Mohamed Mahsoub Mahsoub Mahsoub Mandur, "2D simulation of solar/lamp two-chamber photoelectric converter with different sodium–noble gas mixtures", IOP Publishing, 2020
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Ola Ragab Abdou Mohamed, "Efficient Quadrature Solution for Composite Plate Problems", medwelljournals, 2014
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Mohamed Mohamed Ali Mohamed Saied, "Three Resultant Applications In Surface Modeling For Computer Graphics", Second National Conference of Mathematics, Cairo 6-11 April 1996, 1996
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Magda Mahmoud Mohamed Kasem, "Similarity Analysis of Mass and Heat Transfer of FHD Steady Flow of Nanofluid Incorporating Magnetite Nanoparticles (Fe3O4)", East African Scholars Publisher, Kenya, 2020
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