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首页> 外文期刊>Physics of plasmas >Ion heating, burnout of the high-frequency field, and ion sound generation under the development of a modulation instability of an intense Langmuir wave in a plasma
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Ion heating, burnout of the high-frequency field, and ion sound generation under the development of a modulation instability of an intense Langmuir wave in a plasma

机译:在等离子体中强烈的朗缪尔波调制不稳定性的发展下,离子加热,高频场的烧毁和离子声音的产生

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The development of one-dimensional parametric instabilities of intense long plasma waves is considered in terms of the so-called hybrid models, with electrons being treated as a fluid and ions being regarded as particles. The analysis is performed for both cases when the average plasma field energy is lower (Zakharov's hybrid model-ZHM) or greater (Silin's hybrid model-SHM) than the plasma thermal energy. The efficiency of energy transfer to ions and to ion perturbations under the development of the instability is considered for various values of electron-to-ion mass ratios. The energy of low-frequency oscillations (ion-sound waves) is found to be much lower than the final ion kinetic energy. We also discuss the influence of the changes in the damping rate of the high-frequency (HF) field on the instability development. The decrease of the absorption of the HF field inhibits the HF field burnout within plasma density cavities and gives rise to the broadening of the HF spectrum. At the same time, the ion velocity distribution tends to the normal distribution in both ZHM and SHM. (C) 2015 AIP Publishing LLC.
机译:根据所谓的混合模型,考虑了长等离子长波的一维参数不稳定性的发展,其中电子被视为流体,离子被视为粒子。当两种情况下的平均等离子体场能量低于等离子体热能(Zakharov的混合模型-ZHM)或大于(Silin的混合模型-SHM)时,都进行了分析。对于电子-离子质量比的各种值,考虑了在不稳定性发展下能量转移到离子和离子扰动的效率。发现低频振荡的能量(离子声波)远低于最终离子动能。我们还讨论了高频(HF)场的阻尼率变化对不稳定性发展的影响。 HF场吸收的减少抑制了等离子体密度腔内的HF场燃尽,并导致HF光谱变宽。同时,在ZHM和SHM中离子速度分布趋于正态分布。 (C)2015 AIP Publishing LLC。

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