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Numerical methods and programming, 2018, Volume 19, Issue 2, Pages 194–206
(Mi vmp911)
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Numerical modeling of plasma oscillations with consideration of electron thermal motion
A. A. Frolova, E. V. Chizhonkovb a Joint Institute for High Temperatures, Russian Academy of Sciences, Moscow
b Lomonosov Moscow State University, Faculty of Mechanics and Mathematics
Abstract:
The effect of electron thermal motion on plane nonrelativistic nonlinear plasma oscillations is studied. It is shown numerically and analytically that when the thermal motion is taken into account, the oscillations are transformed to a traveling wave. At the same time, the wave amplitude grows with increasing temperature, which promotes the removal of energy from the initial region of oscillation localization. A finite-difference scheme is proposed for the numerical simulation on the basis of Eulerian variables. When using the Lagrangian variables to approximate small perturbations, the distributions of electron density maxima are obtained depending on the plasma temperature. The obtained analytical results are in good agreement with numerical experiments.
Keywords:
numerical simulation, finite-difference method, plasma oscillations, traveling waves, perturbation method.
Received: 04.04.2018
Citation:
A. A. Frolov, E. V. Chizhonkov, “Numerical modeling of plasma oscillations with consideration of electron thermal motion”, Num. Meth. Prog., 19:2 (2018), 194–206
Linking options:
https://www.mathnet.ru/eng/vmp911 https://www.mathnet.ru/eng/vmp/v19/i2/p194
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Abstract page: | 180 | Full-text PDF : | 84 |
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