...
首页> 外文期刊>Astronomy and astrophysics >Photospheric magnetic topology of a north polar region
【24h】

Photospheric magnetic topology of a north polar region

机译:北极地区的拍摄磁性拓扑

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Aims. We aim to characterise the magnetism of a large fraction of the north polar region close to a maximum of activity, when the polar regions are reversing their dominant polarity. Methods. We make use of full spectropolarimetric data from the CRisp Imaging Spectro-Polarimeter installed at the Swedish Solar Telescope. The data consist of a photospheric spectral line, which is used to infer the various physical parameters of different quiet Sun regions by means of the solution of the radiative transfer equation. We focus our analysis on the properties found for the north polar region and their comparison to the same analysis applied to data taken at disc centre and low-latitude quiet Sun regions for reference. We also analyse the spatial distribution of magnetic structures throughout the north polar region. Results. We find that the physical properties of the polar region (line-of-sight velocity, magnetic flux, magnetic inclination and magnetic azimuth) are compatible with those found for the quiet Sun at disc centre and are similar to the ones found at low latitudes close to the limb. Specifically, the polar region magnetism presents no specific features. The structures for which the transformation from a line-of-sight to a local reference frame was possible harbour large magnetic fluxes (>10~(17)Mx) and are in polarity imbalance with a dominant positive polarity, the largest ones (>10~(19)Mx) being located below 73° latitude.
机译:目标。当极地区域逆转其主力极性时,我们的目标是将大部分的北极区域的大部分近一大部分的磁性置于近距离的最大活动。方法。我们利用安装在瑞典太阳能望远镜的清晰成像光谱 - 偏振仪的全部分光极数据。数据包括光学频谱线,其用于借助于辐射传递方程的解决方案推断不同安静的太阳区域的各种物理参数。我们专注于我们对北极地区找到的物业的分析,以及它们与应用于光盘中心和低纬度安静的太阳区的数据相同的分析的比较。我们还分析了北极地区磁性结构的空间分布。结果。我们发现极地区域的物理性质(视速速度,磁通量,磁倾斜和磁倾斜和磁性方位角)与光盘中心的安静太阳的物理相兼容,并且类似于在低纬度地区的近距离发现的那些肢体。具体地,极性区域磁性没有特定的特征。从视线到局部参考帧的变换的结构是可能的大量磁通量(> 10〜(17)mx),并且具有主体不平衡,具有主要的正极性,最大的极性(> 10 〜(19)MX)位于73°纬度以下。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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