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Investigation and optimization of electron gun beam, based on simulation and experimental results

Authors :
Ghasem Amraee Rad
Ali Arman
Maryam Salehi
Fatemeh Hafezi
Amir Zelati
Source :
Iranian Journal of Physics Research, Vol 23, Iss 1, Pp 105-114 (2023)
Publication Year :
2023
Publisher :
Isfahan University of Technology, 2023.

Abstract

Nowadays, by expanding the application of thin layers in industry and medical sciences, their fabrication methods have also received attention. One of those methods is the vaporizing material method with the help of an electron gun. The most important part in the electron gun is the electron optic, which is responsible for producing and accelerating electrons, so that it becomes possible to vaporize refractory materials in a shorter period of time by better modifying and controlling the electron beam (the shape and diameter of the electron beam) at the target location. The reduction and control of the beam diameter in this evaporation source depends on various parameters such as device geometry, magnetic field intensity, electric power, etc. Therefore, in this research, the effect of those parameters was investigated by conducting experiments and using finite element and modeling software. The simulation results revealed that the effect of the effective parameters on the beam diameter can be predicted to a good extent, so that the diameter of the electron beam decreases by changing the geometrical shape, size and displacement of the output beam components. Then, the new electron gun, compared to the existing prototype, is optimized by applying these changes in the construction of the device and conducting experiments, and its beam diameter is reduced by 40% to be more focused.

Details

Language :
English, Persian
ISSN :
16826957 and 23453664
Volume :
23
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Iranian Journal of Physics Research
Publication Type :
Academic Journal
Accession number :
edsdoj.05c37e7fb2134171bf08c9ce2c3c417a
Document Type :
article
Full Text :
https://doi.org/10.47176/ijpr.23.1.71539