DocumentCode :
1150382
Title :
The microwave generation mechanism of arelativistic electron beam propagating through the dielectric-loaded cylindrical waveguide
Author :
Kim, Sun-Kook ; Choi, Jeong-Sik ; Choi, Duk-In
Author_Institution :
Dept. of Phys., Korea Adv. Inst. of Sci. & Technol., Seoul, South Korea
Volume :
17
Issue :
4
fYear :
1989
fDate :
8/1/1989 12:00:00 AM
Firstpage :
576
Lastpage :
582
Abstract :
The general dispersion relation is derived for the fundamental transverse magnetic modes driven by a cold relativistic electron beam in a dielectric-loaded cylindrical waveguide using the fluid Maxwell equations. It is then reduced to the algebraic equation for the space charge and cyclotron modes using a tenuous beam approximation. Solutions of the resulting equation are obtained by varying several parameters, such as the external magnetic field the dielectric constant and the thickness of the dielectric material. It is shown that the growth rate of the slow cyclotron instability is greatly increased for the region of Bo≲1000 G to the extent that it becomes comparable to the growth rate of a slow space-charge instability. In this region the magnetic-field effect on the slow space-charge mode is shown to increase the growth rate by up to 10%. In the limit of the critical external magnetic field defined as the field below which no beam equilibrium exists, it is found that two slow modes of cyclotron and space-charge modes become degenerate with a finite value of growth rate
Keywords :
dielectric-loaded waveguides; dispersion relations; electron beam effects; permittivity; plasma instability; plasma-beam interactions; algebraic equation; beam equilibrium; cyclotron modes; dielectric constant; dielectric material; dielectric-loaded cylindrical waveguide; external magnetic field; fluid Maxwell equations; fundamental transverse magnetic modes; general dispersion relation; growth rate; magnetic-field effect; microwave generation mechanism; relativistic electron beam; slow cyclotron instability; slow space-charge instability; space charge; tenuous beam approximation; Cyclotrons; Dielectric constant; Dielectric materials; Dispersion; Electron beams; Magnetic fields; Magnetic liquids; Maxwell equations; Microwave generation; Space charge;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/27.31195
Filename :
31195
Link To Document :
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