Published August 1977 | Version v1
Journal article

Modifications in the maximum convective growth rate of the electromagnetic proton cyclotron instability due to the presence of thermal ions

  • 1. Tel Aviv Univ. (Israel). Dept. of Physics and Astronomy

Description

The effect of thermal ions on the convective properties of the electromagnetic proton cyclotron instability is investigated. It is shown that when Asub(p) < 1, where Asub(p) is the proton anisotropy, cold ions, with relative specific charge msub(j)Zsub(j)msub(p) >= 1, stabilize the convective growth of the instability. When Asub(p) > 1, the effect of thermal ions is to enhance the convective growth of the instability in the range where the real part of the frequency, ωsub(r), is smaller than the ion gyro-frequency, Ωsub(j). The maximum enhancement, corresponding to an optimum concentration of heavy ions, is shown to be a constant independent of the species. However, for each species, even for Asub(p) > 1 (except for protons), there is always a range of values for Asub(p) such that the species will stabilize the system. Heavier ions are shown to be more effective in enhancing the convective growth of the instability, in the sense that, the heavier they are, smaller relative concentrations are required to reach the constant value mentioned above. For sufficiently heavy species, the required concentration to optimize the convective growth, is independent of the species. (author)

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Plasma Physics
Journal Volume
18
Journal Issue
1
Series
J. Plasma Phys.
Journal Page Range
91-97
ISSN
0022-3778

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