Numerical study for the effect of angle between inner wall of Wehnelt electrode and its axis on beam dynamics in a thermionic electron gun

Welding electron guns are usually designed using the theory of electron optics, where a change in the size of the Wehnelt electrode in the electrostatic field causes variations in the motion behavior of the electron beam. In this study, the COMSOL software is used to carry out finite element simulat...

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Main Authors: Hanyu Gao, Guoquan Ding, Xin Zhou, Dongbo Chang, Ying Tian, Mengxiang Dang
Format: Article
Language:English
Published: AIP Publishing LLC 2025-01-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/5.0240111
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author Hanyu Gao
Guoquan Ding
Xin Zhou
Dongbo Chang
Ying Tian
Mengxiang Dang
author_facet Hanyu Gao
Guoquan Ding
Xin Zhou
Dongbo Chang
Ying Tian
Mengxiang Dang
author_sort Hanyu Gao
collection DOAJ
description Welding electron guns are usually designed using the theory of electron optics, where a change in the size of the Wehnelt electrode in the electrostatic field causes variations in the motion behavior of the electron beam. In this study, the COMSOL software is used to carry out finite element simulations; under temperature-limited emission conditions, the influence of changing α, which is the angle between the inner wall of the Wehnelt electrode and its central axis, on the beam is mainly analyzed. The results indicate that a change in α causes a variation in the potential on the axis and its first and second derivatives to the axial distance, which in turn causes changes in the beam current and emittance and the radius and position of the beam waist; however, it has no significant effect on the kinetic energy of the electrons. When 75° < α ≤ 90°, the beam cannot be focused effectively. When 0° ≤ α ≤ 15°, the beam current is significantly reduced, and the Wehnelt electrode is most likely to be damaged. After synthetically analyzing the main characteristic parameters of the beam waist, when α = 60°, the requirements for focusing the electron beam of the electron gun in this study can be met.
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institution Kabale University
issn 2158-3226
language English
publishDate 2025-01-01
publisher AIP Publishing LLC
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series AIP Advances
spelling doaj-art-246b8165d63844539dbffa35c3094b392025-02-03T16:40:42ZengAIP Publishing LLCAIP Advances2158-32262025-01-01151015030015030-1110.1063/5.0240111Numerical study for the effect of angle between inner wall of Wehnelt electrode and its axis on beam dynamics in a thermionic electron gunHanyu Gao0Guoquan Ding1Xin Zhou2Dongbo Chang3Ying Tian4Mengxiang Dang5National Key Laboratory of Aerospace Power System and Plasma Technology, Air Force Engineering University, Xi’an 710038, ChinaNational Key Laboratory of Aerospace Power System and Plasma Technology, Air Force Engineering University, Xi’an 710038, ChinaNational Key Laboratory of Aerospace Power System and Plasma Technology, Air Force Engineering University, Xi’an 710038, ChinaNational Key Laboratory of Aerospace Power System and Plasma Technology, Air Force Engineering University, Xi’an 710038, ChinaNational Key Laboratory of Aerospace Power System and Plasma Technology, Air Force Engineering University, Xi’an 710038, ChinaNational Key Laboratory of Aerospace Power System and Plasma Technology, Air Force Engineering University, Xi’an 710038, ChinaWelding electron guns are usually designed using the theory of electron optics, where a change in the size of the Wehnelt electrode in the electrostatic field causes variations in the motion behavior of the electron beam. In this study, the COMSOL software is used to carry out finite element simulations; under temperature-limited emission conditions, the influence of changing α, which is the angle between the inner wall of the Wehnelt electrode and its central axis, on the beam is mainly analyzed. The results indicate that a change in α causes a variation in the potential on the axis and its first and second derivatives to the axial distance, which in turn causes changes in the beam current and emittance and the radius and position of the beam waist; however, it has no significant effect on the kinetic energy of the electrons. When 75° < α ≤ 90°, the beam cannot be focused effectively. When 0° ≤ α ≤ 15°, the beam current is significantly reduced, and the Wehnelt electrode is most likely to be damaged. After synthetically analyzing the main characteristic parameters of the beam waist, when α = 60°, the requirements for focusing the electron beam of the electron gun in this study can be met.http://dx.doi.org/10.1063/5.0240111
spellingShingle Hanyu Gao
Guoquan Ding
Xin Zhou
Dongbo Chang
Ying Tian
Mengxiang Dang
Numerical study for the effect of angle between inner wall of Wehnelt electrode and its axis on beam dynamics in a thermionic electron gun
AIP Advances
title Numerical study for the effect of angle between inner wall of Wehnelt electrode and its axis on beam dynamics in a thermionic electron gun
title_full Numerical study for the effect of angle between inner wall of Wehnelt electrode and its axis on beam dynamics in a thermionic electron gun
title_fullStr Numerical study for the effect of angle between inner wall of Wehnelt electrode and its axis on beam dynamics in a thermionic electron gun
title_full_unstemmed Numerical study for the effect of angle between inner wall of Wehnelt electrode and its axis on beam dynamics in a thermionic electron gun
title_short Numerical study for the effect of angle between inner wall of Wehnelt electrode and its axis on beam dynamics in a thermionic electron gun
title_sort numerical study for the effect of angle between inner wall of wehnelt electrode and its axis on beam dynamics in a thermionic electron gun
url http://dx.doi.org/10.1063/5.0240111
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