Published 1991 | Version v1
Book

Kinetic stability analysis of the extraordinary mode perturbations in a cylindrical magnetron

  • 1. Naval Surface Warfare Center, Silver Spring, MD (United States)

Description

In this paper stability properties of the extraordinary mode perturbations in a relativistic electron flow in a cylindrical magnetron are investigated within the framework of the linearized Vlasov-Maxwell equations. The stability analysis is carried out under the assumptions that the layer is thin and relatively tenuous and that the phase velocity of the perturbed waves is very close to the mean drift velocity of the layer. The perturbed distribution function is calculated by integrating along the electron orbit. The eigenvalue equation is derived and solved in the vacuum and layer regions. Solution in the vacuum region includes the resonator influence and cylindrical curvature effects. A closed algebraic dispersion relation is obtained for the synchronous modes. Analytical investigation of the dispersion relation is carried out for the resonance modes, which are very close to the vacuum modes in the magnetron circuit. The necessary and sufficient condition for instability is obtained for the resonance modes. It is shown that typical growth rates of the instability are few percents of the electron cyclotron frequency

Additional details

Publishing Information

Publisher
SPIE Society of Photo-Optical Instrumentation Engineers.
Imprint Place
Bellingham, WA (United States)
ISBN
0-8794-0497-7
Imprint Title
Intense microwave and particle beams II
Imprint Pagination
657 p.
Journal Page Range
p. 113-127.

Conference

Title
4th Society of Photo-Optical Instrumentation Engineers (SPIE) international symposium.
Acronym
OE/LASE '91
Dates
20-25 Jan 1991.
Place
Los Angeles, CA (United States).

Optional Information

Secondary number(s)
CONF-910123--.