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Multipactor discharge on metals and dielectrics: Historical review and recent theories

Physics of Plasmas · 1998 · Vol. 5(5) · pp. 2120–2126
R. A. KishekY. Y. LauL. K. AngÁ. ValfellsR. M. Gilgenbach

Abstract

This paper reviews the history of multipactor discharge theory, focusing on recent models of multipactor accessibility and saturation. Two cases are treated in detail: That of a first-order, two-surface multipactor, and that of a single-surface multipactor on a dielectric. In both cases, susceptibility curves are constructed to indicate the regions of external parameter space where multipactor is likely to occur, taking into account the dependence on surface materials, and the effects of space charge and cavity loading. In the case of a dielectric, multipactor is found to deliver about 1% of the rf power to the surface. The two cases are contrasted in light of experimental observations.

Particle accelerators and beam dynamicsPower Transformer Diagnostics and InsulationSilicon Carbide Semiconductor TechnologiesPhysicsDielectricSurface (topology)Computational physicsSaturation (graph theory)PlasmaSpace chargeSpace (punctuation)MechanicsOptoelectronics

Funding

  • U.S. Department of Energy
  • Northrop Grumman
  • Texas Tech University
  • Multidisciplinary University Research Initiative
  • Office of Naval Research
  • U.S. Naval Research Laboratory
  • Air Force Office of Scientific Research
Citations
344
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75.22
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32
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