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Stability of electrostatic ion cyclotron waves in a multi-ion plasma

机译:多离子等离子体中静电离子回旋波的稳定性

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We have studied the stability of the electrostatic ion cyclotron wave in a plasma consisting of isotropic hydrogen ions (e???+) and temperature-anisotropic positively (e?‘?+) and negatively (e?‘?a?’) charged oxygen ions, with the electrons drifting parallel to the magnetic field. Analytical expressions have been derived for the frequency and growth/damping rate of ion cyclotron waves around the first harmonic of both hydrogen and oxygen ion gyrofrequencies. We find that the frequencies and growth/damping rates are dependent on the densities and temperatures of all species of ions. A detailed numerical study, for parameters relevant to comet Halley, shows that the growth rate is dependent on the magnitude of the frequency. The ion cyclotron waves are driven by the electron drift parallel to the magnetic field; the temperature anisotropy of the oxygen ions only slightly enhance the growth rates for small values of temperature anisotropies. A simple explanation, in terms of wave exponentiation times, is offered for the absence of electrostatic ion cyclotron waves in the multi-ion plasma of comet Halley.
机译:我们已经研究了由各向同性氢离子(E ??? +)和正向各向异性的等离子体中的静电离子回旋波的稳定性(E?'+)和负面(例如)(例如??a?')氧离子,电子与磁场平行漂移。已经针对氢气和氧离子偏振的第一次谐波周围的离子回旋波的频率和生长/阻尼率来源的分析表达。我们发现频率和增长/阻尼率取决于所有离子种类的密度和温度。对于与COMET HALLEL相关的参数进行详细的数值研究表明,生长速率取决于频率的大小。离子回旋波由平行于磁场的电子漂移驱动;氧离子的温度各向异性仅略微增强了少量温度各向异性值的生长速率。在彗星·哈利的多离子等离子体中没有静电离子回旋波提供了简单的解释。

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