Egedal J, Le A, Daughton W, Wetherton B, Cassak P A, Chen L-J, Lavraud B, Torbert R B, Dorelli J, Gershman D J, Avanov L A
Department of Physics, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Phys Rev Lett. 2016 Oct 28;117(18):185101. doi: 10.1103/PhysRevLett.117.185101. Epub 2016 Oct 24.
Supported by a kinetic simulation, we derive an exclusion energy parameter E_{X} providing a lower kinetic energy bound for an electron to cross from one inflow region to the other during magnetic reconnection. As by a Maxwell demon, only high-energy electrons are permitted to cross the inner reconnection region, setting the electron distribution function observed along the low-density side separatrix during asymmetric reconnection. The analytic model accounts for the two distinct flavors of crescent-shaped electron distributions observed by spacecraft in a thin boundary layer along the low-density separatrix.
在动力学模拟的支持下,我们推导出一个排除能量参数(E_{X}),它为电子在磁重联过程中从一个流入区域穿越到另一个流入区域提供了一个较低的动能界限。就如同麦克斯韦妖一样,只有高能电子被允许穿越内部重联区域,从而确定了在不对称重联期间沿低密度侧分隔线观测到的电子分布函数。该解析模型解释了航天器在沿低密度分隔线的薄边界层中观测到的两种不同类型的月牙形电子分布。