论文标题
不稳定性,异常加热和电子在碰撞等离子体中的随机加速度
Instabilities, Anomalous Heating and Stochastic Acceleration of Electrons in Colliding Plasmas
论文作者
论文摘要
研究了两个扩展的等离子体云的碰撞,强调血浆混合层中的不稳定性和电子能量。这项工作与具有爆炸性的激光或Z-Pinch等离子体的实验室实验直接相关,但也可能阐明天体物理或太空物理环境中的天然等离子体碰撞。在先前的出版物[1,2]中,我们在分析和数值上研究了,从真空室中蒸发的两个平行线发射的互穿冠状的冠状冠。研究的主要焦点是在碰撞层中某些条件下形成的一般流动模式以及较低的壳和薄壳不稳定性。目前的论文集中在两个等离子体的互穿的初始阶段。在这一阶段,两潮离子离子不稳定性,有效的电子加热和随机加速占主导地位的血浆混合。考虑到由不及时驱动的电场驱动的绝热(可逆)电子加热和随机(不可逆的)加速度和加热机制。不可逆性是由电子在波电场中的逃亡加速度和离子和中性散射的螺距散射的组合而产生的。
The collision of two expanding plasma clouds is investigated, emphasizing instabilities and electron energization in the plasma mixing layer. This work is directly relevant to laboratory experiments with explosively-created laser or z-pinch plasmas but may also elucidate naturally occurring plasma collisions in astrophysical or space physics contexts. In the previous publications [1,2] we have studied, analytically and numerically, the flow emerging from interpenetrating coronas launched by two parallel wires vaporized in a vacuum chamber. The main foci of the studies have been on the general flow pattern and lower-hybrid and thin-shell instabilities that under certain conditions develop in the collision layer. The present paper centers around the initial phase of the interpenetration of the two plasmas. A two-stream ion-ion instability, efficient electron heating, and stochastic acceleration dominate plasma mixing at this phase. Both the adiabatic (reversible) electron heating and stochastic (irreversible) acceleration and heating mechanisms, powered by unstably driven electric fields, are considered. The irreversibility results from a combination of electron runaway acceleration in the wave electric fields and pitch-angle scattering on ions and neutrals.