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Simulation Studies of Shock Formation due to Interactions of Two Plasmas in a Magnetic Field and Modified Two-Stream Instabilities

机译:由两个等离子体在磁场中相互作用和修正的两流不稳定性引起的激波形成的模拟研究

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Shock formation due to interactions between exploding and surrounding plasmas and evolution of modified two-stream instabilities are studied using two-dimensional (2D) electromagnetic particle simulations. After the exploding ions penetrate the surrounding plasma, a strong magnetic-field pulse forms near the front of the exploding plasma. Because of modified two-stream instabilities, electromagnetic fluctuations grow to large amplitudes in this pulse. At Ω i t ? 1, where Ω i is the ion cyclotron frequency, the pulse starts to reflect ions and to split into two pulses, which then develop into forward and reverse shock waves. For various values of the initial exploding plasma velocity and of the angle between the velocity and external magnetic field, 2D simulations are performed. The parametric dependence of the properties of the generated pulses and of magnetic fluctuations is discussed.
机译:使用二维(2D)电磁粒子模拟研究了由于爆炸与周围等离子体之间的相互作用以及修正的两流不稳定性的演化而形成的激波。在爆炸离子穿透周围的等离子体之后,一个强磁场脉冲在爆炸等离子体的前部附近形成。由于修改后的两流不稳定性,电磁波动在此脉冲中增大到很大的幅度。在Ω i t处? 1,其中Ω i 是离子回旋频率,该脉冲开始反射离子并分裂为两个脉冲,然后形成正向和反向冲击波。对于初始爆炸等离子体速度以及速度与外部磁场之间的夹角的各种值,执行2D模拟。讨论了所产生的脉冲的特性和磁波动的参数依赖性。

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