论文标题
薄电流板的形成:地球的磁尾和冠状彩带之间的比较
Thin current sheet formation: comparison between Earth's magnetotail and coronal streamers
论文作者
论文摘要
磁场线重新连接是导致磁场拓扑变化和磁场能量耗散到带电的颗粒加热和加速度的通用等离子体过程。在许多系统中,导致磁重新连接的条件取决于具有强度电流的薄层的预先连接构型 - 也称为薄电流板。在这项研究中,我们研究了两个这样的系统:太阳电晕中的地球磁尾和头盔彩带。重新连接的电流板的演化已在磁尾中进行了深入研究,那里有位于原位的航天器观测值。但是,由于缺乏原位观察结果,头盔流媒体电流板的研究较少 - 它们大多通过数值模拟和信息进行了研究,这些模拟和信息可以从遥感仪器中推测。尽管它们的马赫数在很大不同,但在质量上,这两个系统都表现出相同的行为,在太阳能电晕上与磁尾尾库更高。将航天器数据(来自磁尾)与数值模拟(用于头盔流媒体)的比较表明,在两种情况下,预恢复电流电流稀疏主要由血浆压力梯度控制。两个系统的当前密度,磁场和压力梯度的缩放定律相同。我们讨论如何利用磁尾观测和动力学模拟来提高我们对头盔流媒体电流板的理解和建模。
Magnetic field line reconnection is a universal plasma process responsible for the magnetic field topology change and magnetic field energy dissipation into charged particle heating and acceleration. In many systems, the conditions leading to the magnetic reconnection are determined by the pre-reconnection configuration of a thin layer with intense currents -- otherwise known as the thin current sheet. In this study we investigate two such systems: Earth's magnetotail and helmet streamers in the solar corona. The pre-reconnection current sheet evolution has been intensely studied in the magnetotail, where in-situ spacecraft observations are available; but helmet streamer current sheets studies are fewer, due to lack of in-situ observations -- they are mostly investigated with numerical simulations and information that can be surmised from remote sensing instrumentation. Both systems exhibit qualitatively the same behavior, despite their largely different Mach numbers, much higher at the solar corona than at the magnetotail. Comparison of spacecraft data (from the magnetotail) with numerical simulations (for helmet streamers) shows that the pre-reconnection current sheet thinning, for both cases, is primarily controlled by plasma pressure gradients. Scaling laws of the current density, magnetic field, and pressure gradients are the same for both systems. We discuss how magnetotail observations and kinetic simulations can be utilized to improve our understanding and modeling of the helmet streamer current sheets.