...
首页> 外文期刊>The Astrophysical journal >PHOTOSPHERIC FLOW FIELD RELATED TO THE EVOLUTION OF THE SUN'S POLAR MAGNETIC PATCHES OBSERVED BY HINODE SOLAR OPTICAL TELESCOPE
【24h】

PHOTOSPHERIC FLOW FIELD RELATED TO THE EVOLUTION OF THE SUN'S POLAR MAGNETIC PATCHES OBSERVED BY HINODE SOLAR OPTICAL TELESCOPE

机译:与日诺太阳光电望远镜观测到的太阳极磁斑演化有关的光流场

获取原文
           

摘要

We investigated the role of photospheric plasma motions in the formation and evolution of polar magnetic patches using time-sequence observations with high spatial resolution. The observations were obtained with the spectropolarimeter on board the Hinode satellite. From the statistical analysis using 75 magnetic patches, we found that they are surrounded by strong converging, supergranulation associated flows during their apparent lifetime and that the converging flow around the patch boundary is better observed in the Doppler velocity profile in the deeper photosphere. Based on our analysis, we suggest that the like-polarity magnetic fragments in the polar region are advected and clustered by photospheric converging flows, thereby resulting in the formation of polar magnetic patches. Our observations show that, in addition to direct cancellation, magnetic patches decay by fragmentation followed by unipolar disappearance or unipolar disappearance without fragmentation. It is possible that the magnetic patches of existing polarity fragment or diffuse away into smaller elements and eventually cancel out with opposite polarity fragments that reach the polar region around the solar cycle maximum. This could be one of the possible mechanisms by which the existing polarity decays during the reversal of the polar magnetic field.
机译:我们使用具有高空间分辨率的时间序列观测资料,研究了光层等离子体运动在极性磁片形成和演化中的作用。这些观测结果是通过Hinode卫星上的分光偏振计获得的。从使用75个磁斑块进行的统计分析中,我们发现在它们的表观寿命中,它们被强的会聚,超颗粒化相关的流包围,并且在更深的光层中的多普勒速度剖面中可以更好地观察到围绕斑块边界的会聚流。根据我们的分析,我们建议极性区域中的极性相似的磁性碎片通过光球会聚流被平流并聚集,从而导致极性磁性斑块的形成。我们的观察结果表明,除了直接消除外,磁片还会因碎片而衰减,然后单极性消失或无碎片的单极性消失。现有极性的磁块有可能碎片化或扩散成较小的元素,并最终以相反的极性碎片抵消,这些极性碎片到达太阳周期最大值附近的极性区域。这可能是极性磁场反转期间现有极性衰减的可能机制之一。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号