JOURNAL ARTICLE

Beam–plasma instabilities and the beam–plasma discharge

P. J. KelloggR. W. Boswell

Year: 1986 Journal:   The Physics of Fluids Vol: 29 (5)Pages: 1669-1674   Publisher: AIP Publishing

Abstract

Using a new electron gun, a number of measurements bearing on the generation of beam–plasma discharge (BPD) in WOMBAT (waves on magnetized beams and turbulence) [R. W. Boswell and P. J. Kellogg, Geophys. Res. Lett. 10, 565 (1983)] have been made. A beam–plasma discharge is an rf discharge in which the rf fields are provided by instabilities [W. D. Getty and L. D. Smullin, J. Appl. Phys. 34, 3421 (1963)]. The new gun has a narrower divergence angle than the old, and comparison of the BPD thresholds for the two guns verifies that the BPD ignition current is proportional to the cross-sectional area of the plasma. The high-frequency instabilities, precursors to the BPD, are identified with the two Trivelpiece–Gould modes [A. W. Trivelpiece and R. W. Gould, J. Appl. Phys. 30, 1784 (1959)]. Which frequency appears depends on the neutral pressure. The measured frequencies are not consistent with the simple interpretation of the lower frequency as a Cerenkov resonance with the low-Trivelpiece–Gould mode; it must be a cyclotron resonance. As is generally true in such beam–plasma interaction experiments, strong low-frequency waves appear at currents far below those necessary for BPD ignition. These low-frequency waves are shown to control the onset of the high-frequency precursors to the BPD. A mechanism for this control is suggested, which involves the conversion of a convective instability to an absolute one by trapping of the unstable waves in the density perturbations of the low-frequency waves. This process greatly reduces the current necessary for BPD ignition.

Keywords:
Plasma Beam (structure) Atomic physics Physics Convective instability Instability Resonance (particle physics) Ignition system Low frequency Convection Optics Mechanics Nuclear physics

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Citation History

Topics

Ionosphere and magnetosphere dynamics
Physical Sciences →  Physics and Astronomy →  Astronomy and Astrophysics
Magnetic confinement fusion research
Physical Sciences →  Physics and Astronomy →  Nuclear and High Energy Physics
Solar and Space Plasma Dynamics
Physical Sciences →  Physics and Astronomy →  Astronomy and Astrophysics

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