论文标题
热对等离子体和电子普罗顿等离子体之间边界的无碰撞雷利 - 泰勒的不稳定性:undular Mode
Collisionless Rayleigh-Taylor-like instability of the boundary between a hot pair plasma and an electron-proton plasma: the undular mode
论文作者
论文摘要
我们使用二维粒子模拟研究不连续性或活塞的稳定性,该稳定性将电子峰值云与较酷的电子普罗替型等离子体区分开。这种活塞可能存在于相对论的喷气机中,即在X射线耀斑期间成对云形成并扩展到积聚磁盘电晕的等离子体时,将喷气材料与周围环境等离子体形成时,将喷气材料与周围环境等离子体形成。我们在模拟边界处注入一对等离子体,并具有相对论温度和平均速度。它流过空间均匀的电子普罗顿等离子体,该等离子体被背景磁场渗透。将磁场与一个模拟方向对齐,并与对云的平均速度向量定向。扩展的一对云会排出磁场,并将其堆积在其前面。它被放大到足够大以捕获环境电子的值。被困的电子的电流(随着云端膨胀的前沿携带)驱动了加速质子的电场。孤立的波在饱和后生长并变成活塞。我们的模拟表明,这种活塞经历了类似于雷利 - 泰勒不稳定的无冲突的不稳定性。 undular模式增长,我们观察到质子密度分布中的手指。不稳定性的作用是变形活塞,但不能破坏活塞。
We study with a two-dimensional particle-in-cell simulation the stability of a discontinuity or piston, which separates an electron-positron cloud from a cooler electron-proton plasma. Such a piston might be present in the relativistic jets of accreting black holes separating the jet material from the surrounding ambient plasma and when pair clouds form during an X-ray flare and expand into the plasma of the accretion disk corona. We inject a pair plasma at a simulation boundary with a mildly relativistic temperature and mean speed. It flows across a spatially uniform electron-proton plasma, which is permeated by a background magnetic field. The magnetic field is aligned with one simulation direction and oriented orthogonally to the mean velocity vector of the pair cloud. The expanding pair cloud expels the magnetic field and piles it up at its front. It is amplified to a value large enough to trap ambient electrons. The current of the trapped electrons, which are carried with the expanding cloud front, drives an electric field that accelerates protons. A solitary wave grows and changes into a piston after it saturated. Our simulations show that this piston undergoes a collision-less instability similar to a Rayleigh-Taylor instability. The undular mode grows and we observe fingers in the proton density distribution. The effect of the instability is to deform the piston but it cannot destroy it.