论文标题

湍流重新连接加速度

Turbulent reconnection acceleration

论文作者

Xu, Siyao, Lazarian, Alex

论文摘要

天体物理等离子体中普遍存在的湍流对于磁重新连接和重新连接加速度都很重要。我们研究了通过重新连接驱动的湍流快速3D湍流重新连接的颗粒加速度。粒子由于镜面反射和强磁场的收敛而导致重新连接驱动的流入之间来回反弹。通过连续的正面碰撞,流入的动能被转化为加速粒子。湍流不仅调节流入速度,而且还引入了相对于局部湍流磁场的各种流入斜率。由于颗粒的能量增益和逃逸概率都取决于流入速度,因此颗粒能谱的光谱指数并非通用。我们发现它的范围从$ \ \ \ \ $ 4 $,预计在强导磁场上预期最陡峭的频谱,即总传入磁场和导向场之间的角度很小。在限制颗粒所需的散射扩散的情况下,重新连接加速度在较大的流入速度和弱导向场上可能非常有效。

The ubiquitous turbulence in astrophysical plasmas is important for both magnetic reconnection and reconnection acceleration. We study the particle acceleration during fast 3D turbulent reconnection with reconnection-driven turbulence. Particles bounce back and forth between the reconnection-driven inflows due to the mirror reflection and convergence of strong magnetic fields. Via successive head-on collisions, the kinetic energy of the inflows is converted into the accelerated particles. Turbulence not only regulates the inflow speed but also introduces various inflow obliquities with respect to the local turbulent magnetic fields. As both the energy gain and escape probability of particles depend on the inflow speed, the spectral index of particle energy spectrum is not universal. We find it in the range from $\approx 2.5$ to $4$, with the steepest spectrum expected at a strong guide field, i.e. a small angle between the total incoming magnetic field and the guide field. Without scattering diffusion needed for confining particles, the reconnection acceleration can be very efficient at a large inflow speed and a weak guide field.

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