TY - JOUR
T1 - A Proposal for a Uniform Magnetic Focusing System to Improve the Sheet Beam Transmission
AU - Wang, Wenbo
AU - Ruan, Cunjun
AU - Wang, Pengpeng
AU - Zhao, Yaqi
AU - Xu, Tianyi
N1 - Publisher Copyright:
© 2025 IEEE. All rights reserved,
PY - 2025
Y1 - 2025
N2 - —Sheet electron beam (SEB) has been widely concerned in high-power vacuum electronic devices (VEDs). By enlarging its transverse size, the current of SEB can be further increased under the premise of relatively low current density, thus greatly enhancing the output power. However, the instability of SEB transmission under the focusing of uniform magnetic focusing system (UMFS) limits the further development of SEB-VEDs. In order to solve this problem, a novel and simple method to improve the transmission performance of SEB has been proposed in this article. Based on the conventional UMFS, this method adds two another magnetic blocks with transverse magnetization, and then, the transverse magnetic (TM) field will be generated and will be fully utilized in optimizing the transmission of SEB. Comparative analysis of simulation results shows that under the same strength of the axial magnetic field, using the UMFS with additional TM field (TM-UMFS) to focus the SEB can further increase the electron passing rate by at least 30% compared to the conventional UMFS. The simple structure of TM-UMFS proposed in this article shows the high possibility in the fabricating process and is expected to obtain further development in the high-power SEB-VED industry.
AB - —Sheet electron beam (SEB) has been widely concerned in high-power vacuum electronic devices (VEDs). By enlarging its transverse size, the current of SEB can be further increased under the premise of relatively low current density, thus greatly enhancing the output power. However, the instability of SEB transmission under the focusing of uniform magnetic focusing system (UMFS) limits the further development of SEB-VEDs. In order to solve this problem, a novel and simple method to improve the transmission performance of SEB has been proposed in this article. Based on the conventional UMFS, this method adds two another magnetic blocks with transverse magnetization, and then, the transverse magnetic (TM) field will be generated and will be fully utilized in optimizing the transmission of SEB. Comparative analysis of simulation results shows that under the same strength of the axial magnetic field, using the UMFS with additional TM field (TM-UMFS) to focus the SEB can further increase the electron passing rate by at least 30% compared to the conventional UMFS. The simple structure of TM-UMFS proposed in this article shows the high possibility in the fabricating process and is expected to obtain further development in the high-power SEB-VED industry.
KW - Diocotron instability
KW - passing rate
KW - shear force
KW - sheet electron beam (SEB)
KW - transverse magnetic (TM) field
KW - uniform magnetic focusing system (UMFS)
UR - https://www.scopus.com/pages/publications/105010716936
U2 - 10.1109/TPS.2025.3585526
DO - 10.1109/TPS.2025.3585526
M3 - 文章
AN - SCOPUS:105010716936
SN - 0093-3813
VL - 53
SP - 1866
EP - 1873
JO - IEEE Transactions on Plasma Science
JF - IEEE Transactions on Plasma Science
IS - 8
ER -