论文标题

关于磁膨胀因子与观察到的冠状伪流的速度之间的关系

On the Relationship between Magnetic Expansion Factor and Observed Speed of the Solar Wind from Coronal Pseudostreamers

论文作者

Wallace, Samantha, Arge, Charles N., Viall, Nicholeen M., Pihlstrom, Ylva

论文摘要

在过去的30多年中,基于这两个数量之间的反相关关系,在经验关系中使用了磁扩展因子($ f_s $),以预测太阳风速($ v_ {obs} $)。冠状单极流媒体(即伪流)经历了有限的场线扩展,从而导致$ f_s $依赖性关系,以预测与这些结构相关的快风。但是,案例研究表明,原位观察到的伪流太阳风要比以$ f_s $得出的速度慢得多。为了进一步研究,我们进行了统计分析,以确定$ f_s $和$ v_ {obs} $是否在多个1 AU航天器上观察到伪式升级器的时期(即ACE,ACE,contereo-a/b)时是否相关。我们使用由空军数据同化光球传输(Adapt)光电场图驱动的Wang-Sheeley-Arge(WSA)模型,以识别Spacecraft观察PseudoStreameer风时的38个时期。我们比较了伪流式尖尖的最后一个开放线线的膨胀因子与相应的原位测得的太阳风速。我们发现只有缓慢的风($ v_ {obs} $ $ <$ <$ 500 km/s)与伪驱动器相关联,并且对于这些字段线,$ f_s $和$ v_ {obs} $之间没有显着相关性。这表明,伪流式器的开放式边界附近的场线不受$ f_s $ - $ v_ {obs} $关系中假定的连续开放式通量管的稳态加速。通常,在互换重新连接之类的开放场和封闭线之间的边界处的动力学将使这种关系的稳态假设无效。

For the past 30+ years, the magnetic expansion factor ($f_s$) has been used in empirical relationships to predict solar wind speed ($v_{obs}$) at 1 AU, based on an inverse relationship between these two quantities. Coronal unipolar streamers (i.e. pseudostreamers) undergo limited field line expansion, resulting in $f_s$-dependent relationships to predict fast wind associated with these structures. However, case studies have shown that in situ observed pseudostreamer solar wind was much slower than that derived with $f_s$. To investigate this further, we conduct a statistical analysis to determine if $f_s$ and $v_{obs}$ are inversely correlated for a large sample of periods when pseudostreamer wind was observed at multiple 1 AU spacecraft (i.e. ACE, STEREO-A/B). We use the Wang-Sheeley-Arge (WSA) model driven by Air Force Data Assimilative Photospheric Flux Transport (ADAPT) photospheric field maps to identify 38 periods when spacecraft observe pseudostreamer wind. We compare the expansion factor of the last open field lines on either side of a pseudostreamer cusp with the corresponding in situ measured solar wind speed. We find only slow wind ($v_{obs}$ $<$ 500 km/s) is associated with pseudostreamers, and that there is not a significant correlation between $f_s$ and $v_{obs}$ for these field lines. This suggests that field lines near the open-closed boundary of pseudostreamers are not subject to the steady-state acceleration along continuously open flux tubes assumed in the $f_s$-$v_{obs}$ relationship. In general, dynamics at the boundary between open and closed field lines such as interchange reconnection will invalidate the steady-state assumptions of this relationship.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源