Interchange Reconnection Alfvén Wave Generation

被引:0
|
作者
B. J. Lynch
J. K. Edmondson
Y. Li
机构
[1] University of California,Space Sciences Laboratory
[2] University of Michigan,Atmospheric, Oceanic and Space Sciences Department
来源
Solar Physics | 2014年 / 289卷
关键词
Magnetohydrodynamics; Magnetic fields, corona; Magnetic reconnection, theory; Solar wind; Waves, magnetohydrodynamic;
D O I
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中图分类号
学科分类号
摘要
Given recent observational results of interchange reconnection processes in the solar corona and the theoretical development of the S-Web model for the slow solar wind, we extend the analysis of the 3D MHD simulation of interchange reconnection by Edmondson et al. (Astrophys. J.707, 1427, 2009). Specifically, we analyze the consequences of the dynamic streamer-belt jump that corresponds to flux opening by interchange reconnection. Information about the magnetic field restructuring by interchange reconnection is carried throughout the system by Alfvén waves propagating away from the reconnection region, distributing the shear and twist imparted by the driving flows, including shedding the injected stress-energy and accumulated magnetic helicity along newly open fieldlines. We quantify the properties of the reconnection-generated wave activity in the simulation. There is a localized high-frequency component associated with the current sheet/reconnection site and an extended low-frequency component associated with the large-scale torsional Alfvén wave generated from the interchange reconnection field restructuring. The characteristic wavelengths of the torsional Alfvén wave reflect the spatial size of the energized bipolar flux region. Lastly, we discuss avenues of future research by modeling these interchange reconnection-driven waves and investigating their observational signatures.
引用
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页码:3043 / 3058
页数:15
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