MAGNETIC FOCUSING SYSTEM FOR INTENSE ELECTRON BEAMS OF SUBMILLIMETER CLINOTRONS
Cite this article as:
Zavertanniy V. V., Kishko S. А., Ponomarenko S. S., Yefimov B. P., Zabrodskiy А. ., Kirichenko . А., Kudinova Т. V., Kuleshov А. N. MAGNETIC FOCUSING SYSTEM FOR INTENSE ELECTRON BEAMS OF SUBMILLIMETER CLINOTRONS. Izvestiya VUZ. Applied Nonlinear Dynamics, 2012, vol. 20, iss. 5, pp. 112-120. DOI: https://doi.org/10.18500/0869-6632-2012-20-5-112-120
The simulation results of multisegment permanent magnet magnetic focusing system for clinotrons in submillimeter range have been presented. The visualization of magnetic field distribution in the gap between the system magnetic poles was done with the help of computer simulations. The simulation results are compared with those obtained experimentally. The magnetic field distribution curves of both single segment and whole multisegment magnetic system are presented. It is shown that for a given configuration of the magnets in the system gap of 32 mm the magnetic field of 1.1 T is obtained. The generation parameters of clinotrons with developed magnetic focusing system were experimentally obtained in submillimeter range.
1. Левин Г.Я., Бородкин А.И., Кириченко А.Я., Усиков А.Я., Чурилова С.А. Клинотрон / Под. ред. А.Я. Усикова. Киев: Наук. думка, 1992. 200 c.
2. Капитонов В.Е. Оптимизация магнитных фокусирующих систем методом синтеза // Электроника миллиметрового и субмиллиметрового диапазонов: сб. науч. тр. Киев: Наук. думка, 1988. 172 c.
3. http://laacg1.lanl.gov/laacg/services/download_sf.phtml.
4. www.cst.com.
5. Морозов О.А., Воскобойников М.Ф., Каргин А.Н., Савенко Г.П. Второе рождение магнетронного направления // Электронная техника. Сер. 1: СВЧ-Техника. 2008. Вып. 3. С. 3.
6. Альтшулер Ю.Г., Татаренко А.С. Лампы малой мощности с обратной / Под ред. М.Ф. Стельмаха. М.: «Советское радио», 1963. 295 c.
BibTeX
author = {V. V. Zavertanniy and S. А. Kishko and S. S. Ponomarenko and B. P. Yefimov and А. F. Zabrodskiy and L. А. Kirichenko and Т. V. Kudinova and А. N. Kuleshov},
title = {MAGNETIC FOCUSING SYSTEM FOR INTENSE ELECTRON BEAMS OF SUBMILLIMETER CLINOTRONS},
year = {2012},
journal = {Izvestiya VUZ. Applied Nonlinear Dynamics},
volume = {20},number = {5},
url = {https://old-andjournal.sgu.ru/en/articles/magnetic-focusing-system-for-intense-electron-beams-of-submillimeter-clinotrons},
address = {Саратов},
language = {russian},
doi = {10.18500/0869-6632-2012-20-5-112-120},pages = {112--120},issn = {0869-6632},
keywords = {Backward wave oscillator,magnetic focusing system,rareearth metals,intensive electron beam,submillimeter clinotron.},
abstract = {The simulation results of multisegment permanent magnet magnetic focusing system for clinotrons in submillimeter range have been presented. The visualization of magnetic field distribution in the gap between the system magnetic poles was done with the help of computer simulations. The simulation results are compared with those obtained experimentally. The magnetic field distribution curves of both single segment and whole multisegment magnetic system are presented. It is shown that for a given configuration of the magnets in the system gap of 32 mm the magnetic field of 1.1 T is obtained. The generation parameters of clinotrons with developed magnetic focusing system were experimentally obtained in submillimeter range. }}