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首页> 外文期刊>Physics of plasmas >Ion dynamics in multiple electrostatic waves in a magnetized plasma. II. Enhancement of the acceleration
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Ion dynamics in multiple electrostatic waves in a magnetized plasma. II. Enhancement of the acceleration

机译:磁化等离子体中多个静电波中的离子动力学。二。增强加速度

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The maximal energy an ion can gain from a discrete spectrum of electrostatic waves propagating perpendicularly to a uniform magnetic field is investigated. In the case when the wave spectrum contains at least two on-resonance waves, the ion is shown to reach energies which are much higher than in the case of one wave. When the ion energization is enhanced, even when the ion motion is not coherent, the ion orbit remains close to orbits found from a first order perturbation analysis. This implies that, unlike in the case of a single wave, the ion can reach high energies regardless of how small the wave amplitudes are. The dependence of the ion energization on the wave spectrum characteristics is described in great detail by deriving the extent, in action, of the first order orbits, and the way these orbits may connect. (C) 1998 American Institute of Physics. [S1070-664X(98)02609-3]. [References: 11]
机译:研究了离子可从垂直于均匀磁场传播的静电波的离散光谱中获得的最大能量。在波谱包含至少两个共振波的情况下,离子显示的能量远高于一个波的情况。当增强离子激励时,即使离子运动不连贯,离子轨道也保持接近从一阶扰动分析中发现的轨道。这意味着,与单波情况不同,无论波幅大小有多小,离子都可以达到高能量。通过推导一阶轨道的作用程度以及这些轨道的连接方式,可以详细描述离子激发对波谱特性的依赖性。 (C)1998美国物理研究所。 [S1070-664X(98)02609-3]。 [参考:11]

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