Shenzhen Key Laboratory of Numerical Prediction for Space Storm, Institute of Space Science and Applied Technology, Harbin Institute of Technology, Shenzhen, 518055, China.
Key Laboratory of Solar Activity and Space Weather, National Space Science Center, Chinese Academy of Sciences, Beijing, China.
PLoS One. 2023 May 30;18(5):e0286138. doi: 10.1371/journal.pone.0286138. eCollection 2023.
Magnetic reconnection is a process that can rapidly convert magnetic field energy into plasma thermal energy and kinetic energy, and it is also an important energy conversion mechanism in space physics, astrophysics and plasma physics. Research related to analytical solutions for time-dependent three-dimensional magnetic reconnection is extremely difficult. For decades, several mathematical descriptions have been developed regarding different reconnection mechanisms, in which the equations based on magnetohydrodynamics theory outside the reconnection diffusion region are widely accepted. However, the equation set cannot be analytically solved unless specified constraints are imposed or the equations are reduced. Based on previous analytical methods for kinematic stationary reconnection, here the analytical solutions for time-dependent kinematic three-dimensional magnetic reconnection are discussed. In contrast to the counter-rotating plasma flows that existed in steady-state reconnection, it is found that spiral plasma flows, which have never been reported before, can be generated if the magnetic field changes exponentially with time. These analyses reveal new scenarios for time-dependent kinematic three-dimensional magnetic reconnection, and the deduced analytical solutions could improve our understanding of the dynamics involved in reconnection processes, as well as the interactions between the magnetic field and plasma flows during magnetic reconnection.
磁重联是一种能够将磁场能量快速转化为等离子体热能和动能的过程,也是空间物理、天体物理和等离子体物理中的重要能量转换机制。研究与时间相关的三维磁重联的解析解极其困难。几十年来,针对不同的重联机制已经发展出了几种数学描述,其中基于磁流体力学理论的方程在重联扩散区之外被广泛接受。然而,除非施加特定的约束条件或对方程进行简化,否则方程组无法进行解析求解。基于之前针对动力学定态重联的解析方法,这里讨论了时间相关的动力学三维磁重联的解析解。与稳态重联中存在的反向旋转等离子体流不同,如果磁场随时间呈指数变化,则可以产生以前从未报道过的螺旋等离子体流。这些分析揭示了时间相关的动力学三维磁重联的新情景,推导得出的解析解可以增进我们对重联过程中涉及的动力学以及在磁重联过程中磁场和等离子体流之间相互作用的理解。