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首页> 外文期刊>The Astrophysical journal >Multi-fluid Approach to High-frequency Waves in Plasmas. III. Nonlinear Regime and Plasma Heating
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Multi-fluid Approach to High-frequency Waves in Plasmas. III. Nonlinear Regime and Plasma Heating

机译:等离子体中高频波的多流体方法。三,非线性状态和等离子体加热

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The multi-fluid modeling of high-frequency waves in partially ionized plasmas has shown that the behavior of magnetohydrodynamic waves in the linear regime is heavily influenced by the collisional interaction between the different species that form the plasma. Here, we go beyond linear theory and study large-amplitude waves in partially ionized plasmas using a nonlinear multi-fluid code. It is known that in fully ionized plasmas, nonlinear Alfvén waves generate density and pressure perturbations. Those nonlinear effects are more pronounced for standing oscillations than for propagating waves. By means of numerical simulations and analytical approximations, we examine how the collisional interaction between ions and neutrals affects the nonlinear evolution. The friction due to collisions dissipates a fraction of the wave energy, which is transformed into heat and consequently raises the temperature of the plasma. As an application, we investigate frictional heating in a plasma with physical conditions akin to those in a quiescent solar prominence.
机译:对部分电离等离子体中的高频波进行的多流体建模表明,在线性状态下,磁流体动力波的行为受形成等离子体的不同物种之间的碰撞相互作用的严重影响。在这里,我们超越了线性理论,使用非线性多流体代码研究了部分电离等离子体中的大振幅波。众所周知,在完全电离的等离子体中,非线性Alfvén波会产生密度和压力扰动。对于驻波,这些非线性效应比传播波更为明显。通过数值模拟和解析逼近,我们研究了离子与中性离子之间的碰撞相互作用如何影响非线性演化。由于碰撞而产生的摩擦耗散了一部分波能,该波能转化为热量,因此升高了等离子体的温度。作为一种应用,我们研究了等离子体中的摩擦加热,其物理条件类似于静止的太阳突出。

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