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Electron and Positron Collision with Plasma Wall Coating Elements
by
S.P., Yurekha
, Gupta, Dhanoj
, Balajee R
, Sharma, Snigdha
in
Absorption cross sections
/ absorption cross-section
/ Approximation
/ Collisions (Nuclear physics)
/ Elastic scattering
/ Electrons
/ ELSEPA
/ Energy
/ Fusion
/ integral elastic cross-section
/ Molecular physics
/ Momentum transfer cross section
/ Plasma
/ Plasma physics
/ Positive ions
/ Positrons
/ Protective coatings
/ Radiation
/ Tokamaks
/ total cross-section
/ viscosity cross-section
2025
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Electron and Positron Collision with Plasma Wall Coating Elements
by
S.P., Yurekha
, Gupta, Dhanoj
, Balajee R
, Sharma, Snigdha
in
Absorption cross sections
/ absorption cross-section
/ Approximation
/ Collisions (Nuclear physics)
/ Elastic scattering
/ Electrons
/ ELSEPA
/ Energy
/ Fusion
/ integral elastic cross-section
/ Molecular physics
/ Momentum transfer cross section
/ Plasma
/ Plasma physics
/ Positive ions
/ Positrons
/ Protective coatings
/ Radiation
/ Tokamaks
/ total cross-section
/ viscosity cross-section
2025
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Do you wish to request the book?
Electron and Positron Collision with Plasma Wall Coating Elements
by
S.P., Yurekha
, Gupta, Dhanoj
, Balajee R
, Sharma, Snigdha
in
Absorption cross sections
/ absorption cross-section
/ Approximation
/ Collisions (Nuclear physics)
/ Elastic scattering
/ Electrons
/ ELSEPA
/ Energy
/ Fusion
/ integral elastic cross-section
/ Molecular physics
/ Momentum transfer cross section
/ Plasma
/ Plasma physics
/ Positive ions
/ Positrons
/ Protective coatings
/ Radiation
/ Tokamaks
/ total cross-section
/ viscosity cross-section
2025
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Electron and Positron Collision with Plasma Wall Coating Elements
Journal Article
Electron and Positron Collision with Plasma Wall Coating Elements
2025
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Overview
The investigation of integral elastic cross-section (ICS), momentum transfer cross-section (MTCS), viscosity cross-section (VCS), absorption cross-section (ABSCS), and total cross-section (TCS) of atoms by electron (e−) and positron (e+) impact is very crucial and essential for understanding fundamental atomic processes and their applications in various fields such as plasma physics, molecular physics, and astrophysics. This study investigates and analyses the ICS, MTCS, VCS, ABSCS, and TCS of the atoms, Li, Be, B, Ti, and W, over a wide energy range. By employing the computational Optical Potential Method (OPM) and quantum scattering integrated in a computational package, ELSEPA (Elastic scattering of electrons and positrons by atoms, positive ions and molecules), the cross-sections of atoms by electron and positron impact are calculated. The present results shows good agreement with all the experimental and theoretical data available in the literature. The obtained cross-sections may facilitate the development of accurate models for plasma simulations and fusion research.
Publisher
MDPI AG
Subject
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