首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Forced reconnection in the near magnetotail: Onset and energy conversion in PIC and MHD simulations
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Forced reconnection in the near magnetotail: Onset and energy conversion in PIC and MHD simulations

机译:强制重新连接在不久的磁尾:发病并在图片和磁流体动力模拟能量转换

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摘要

Using two-dimensional particle-in-cell (PIC) together with magnetohydrodynamic (MHD) simulations of magnetotail dynamics, we investigate the evolution toward onset of reconnection and the subsequent energy transfer and conversion. In either case, reconnection onset is preceded by a driven phase, during which magnetic flux is added to the tail at the high-latitude boundaries, followed by a relaxation phase, during which the configuration continues to respond to the driving. The boundary deformation leads to the formation of thin embedded current sheets, which are bifurcated in the near tail, converging to a single sheet farther out in the MHD simulations. The thin current sheets in the PIC simulation are carried by electrons and are associated with a strong perpendicular electrostatic field, which may provide a connection to parallel potentials and auroral arcs and an ionospheric signal even prior to the onset of reconnection. The PIC simulation very well satisfies integral entropy conservation (intrinsic to ideal MHD) during this phase, supporting ideal ballooning stability. Eventually, the current intensification leads to the onset of reconnection, the formation and ejection of a plasmoid, and a collapse of the inner tail. The earthward flow shows the characteristics of a dipolarization front: enhancement of Bz, associated with a thin vertical electron current sheet in the PIC simulation. Both MHD and PIC simulations show a dominance of energy conversion from incoming Poynting flux to outgoing enthalpy flux, resulting in heating of the inner tail. Localized Joule dissipation plays only a minor role.
机译:使用二维particle-in-cell(图片)在磁流体动力(磁流体动力)磁尾动力学的模拟,我们研究进化的重新连接和随后的能量转移和转换。出现之前是一个驱动的阶段,在此期间磁通被添加到尾巴的高纬度地区的界限,放松的阶段,在此期间,该配置继续应对开车。变形导致薄的形成嵌入式当前表,分岔不久的尾巴,收敛于一个单一的表更远的磁流体动力模拟。当前表的图片模拟进行由电子和强大垂直的静电场,提供一个连接到平行和潜力极光弧,甚至一个电离层信号之前重新连接的发病。很好地满足熵守恒积分(内在理想磁流体动力)在此阶段,支持理想不断膨胀的稳定。最终,当前强化导致形成和重新连接的发作喷射的等离子粒团,崩溃内心的尾巴。dipolarization战线的特点:增强,薄垂直电子电流片的照片模拟。从传入的主导能量转换能流密度通量外向焓通量,导致加热内部的尾巴。焦耳耗散扮演次要角色。

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