Determination of the Mathematical Model for Plasma Electronic Coefficients of the Earth's Ionosphere

Authors

  • Aseel A. Temur Department of Astronomy and Space, College of Science, University of Baghdad, Baghdad, Iraq / Department of Radiology and Sonar Techniques, Al Esraa University College, Baghdad, Iraq
  • Ala F. Ahmed Department of Astronomy and Space, College of Science, University of Baghdad, Baghdad, Iraq
  • Rafid A. Ali Department of Physics College of Science, Mustansiriyah University, Baghdad, Iraq

DOI:

https://doi.org/10.24996/ijs.2023.64.3.39

Keywords:

Ionosphere, Total collision frequency, Total ionization frequency, Power, Electric field, Boltzmann Equation, Gas Discharge

Abstract

In this research, electron coefficients such as total collision frequency (colt/N), total ionization frequency (viz/N), and Power (P/N) for different gases such as (Ar, He, N2 and O2 (in Earth’s ionosphere have been calculated by applying the Boltzmann equation utilizing BOLSIG +, and it has been discovered that there is a significant impact of reducing the electric field (E/N) on electronic coefficients under which (E/N) increases. In addition, influence of (E/N) on electronic coefficients was studied. Reducing the electric field was chosen in the restricted range (1-100) Td, and the electronic coefficients for gases in the limited range (50-2000) km of the Earth's ionosphere. A positive correlation has been explained between all the plasma electronic coefficients and (E/N) for the four gases. It was found that He gas has higher electronic coefficients than other gases in the Earth's ionosphere because they have lower electron binding energy.

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Published

2023-03-30

Issue

Section

Astronomy and Space

How to Cite

Determination of the Mathematical Model for Plasma Electronic Coefficients of the Earth’s Ionosphere. (2023). Iraqi Journal of Science, 64(3), 1508-1517. https://doi.org/10.24996/ijs.2023.64.3.39

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