The present paper is a coherent account of various aspects of longitudinal oscillations in one and two component plasmas. A discussion is offered of dispersion equations, conditions necessary for the growth or decay of oscillations, the physical mechanisms of growing or damping, and the possibility of arbitrary steady-state solutions. The physical situation is described in…
Journal of Nuclear Energy Part C Plasma Physics Accelerators Thermonuclear Research Template
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About the Journal of Nuclear Energy Part C Plasma Physics Accelerators Thermonuclear Research format
Journal of Nuclear Energy Part C Plasma Physics Accelerators Thermonuclear Research is a peer-reviewed journal published by IOP Publishing, covering Magnetic confinement fusion research, Plasma Diagnostics and Applications, Particle accelerators and beam dynamics.
| Publisher | IOP Publishing |
|---|---|
| Reference style | Numbered (IOP) Numbered — [1], [2] in the text [1] Smith A, Jones B and Lee C 2023 A representative article title Journal of Nuclear Energy Part C Plasma Physics Accelerators Thermonuclear Research 12 45–58
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| Publishes research in | Magnetic confinement fusion research Plasma Diagnostics and Applications Particle accelerators and beam dynamics Particle Accelerators and Free-Electron Lasers Ionosphere and magnetosphere dynamics |
| ISSN | 0368-3281 |
| h-index | 28 |
| i10-index | 86 |
| Total citations | 4,317 |
| Top institutions publishing here | Culham Science Centre |
| You get | A submission-ready PDF and the editable LaTeX source — ready to submit. |
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Most-cited papers in Journal of Nuclear Energy Part C Plasma Physics Accelerators Thermonuclear Research
The positive column of a gas discharge is shown to become unstable when a sufficiently large longitudinal magnetic field is superimposed. This instability causes oscillations which lead to an increase in the flux of charged particles striking the walls; that is, in agreement with the experimental results, there is an increase in the effective diffusion.
The general dispersion relation is derived for small amplitude waves in a fully-ionized plasma in an external magnetic field. This derivation is based on the Vlasov equations (Boltzmann equations without collision terms for the electrons and ions plus Maxwell's equations). The dispersion relation involve integrals over the zero-th order velocity distributions. It is found that…
The relationship is investigated between laminar and turbulent theories of the structure of a collisionless shock wave. For pe ≫ pi, where pi, pe are the ion and electron pressures, a laminar structure of the shock wave may be constructed in terms of the `solitary' wave with thickness of the order of the Debye length.…
The maximum growth rate of longitudinal plasma waves of small amplitude in a current-carrying plasma and in two counterstreaming plasmas is evaluated as a function of the drift velocity and the electron-to-ion temperature ratio. A non-linear dispersion equation is derived from the collisionless Boltzmann equation, using an iteration procedure, and is used to predict the…