DocumentCode :
1278636
Title :
Simulations of Multipactor Breakdown Between Two Cylinders
Author :
Rasch, J. ; Semenov, V.E. ; Rakova, E. ; Anderson, D. ; Johansson, J.F. ; Lisak, M. ; Puech, J.
Author_Institution :
Chalmers Univ. of Technol., Göteborg, Sweden
Volume :
39
Issue :
9
fYear :
2011
Firstpage :
1786
Lastpage :
1794
Abstract :
Simulations have been performed to determine the multipactor breakdown threshold in a microwave structure composed of two parallel cylinders, chosen to be an approximate model of an open helix microwave antenna system. The electromagnetic field between the cylinders is available in closed analytical form, and a Monte Carlo software has been developed to calculate the 2-D electron trajectories and to simulate the multipactor avalanche in this inhomogeneous electric field for different ratios of cylinder radius and distance of separation between the cylinders. The results are compared with those of a recently published analytical theory and show a qualitatively good agreement. In particular, it is confirmed that, for a given distance between cylinders, there exists a smallest cylinder radius below which no two-sided multipactor breakdown can occur. The basic physical explanation is a loss mechanism for secondary emitted electrons that is caused by the curvature of the cylinder surfaces together with the strong electric field at the surfaces. The results imply that the breakdown threshold in realistic open helix antennas is significantly higher than those predicted using extrapolations based on resonance theory and the classical two parallel plate model.
Keywords :
Monte Carlo methods; electromagnetic fields; extrapolation; helical antennas; microwave antennas; 2D electron trajectories; Monte Carlo software; microwave structure; multipactor avalanche; multipactor breakdown threshold; open helix microwave antenna system; parallel cylinders; resonance theory; two parallel plate model; Approximation methods; Dispersion; Electric breakdown; Geometry; Helical antennas; Trajectory; Wires; Helix antenna; microwave breakdown; multipactor;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2011.2159997
Filename :
5959220
Link To Document :
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