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首页> 外文期刊>The Astrophysical journal >POLAR FIELD REVERSAL OBSERVATIONS WITH HINODE
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POLAR FIELD REVERSAL OBSERVATIONS WITH HINODE

机译:INO野的极地反演

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We have been monitoring yearly variation in the Sun's polar magnetic fields with the Solar Optical Telescope aboard Hinode to record their evolution and expected reversal near the solar maximum. All magnetic patches in the magnetic flux maps are automatically identified to obtain the number density and magnetic flux density as a function of the total magnetic flux per patch. The detected magnetic flux per patch ranges over four orders of magnitude (1015-1020?Mx). The higher end of the magnetic flux in the polar regions is about one order of magnitude larger than that of the quiet Sun, and nearly that of pores. Almost all large patches (≥1018?Mx) have the same polarity, while smaller patches have a fair balance of both polarities. The polarity of the polar region as a whole is consequently determined only by the large magnetic concentrations. A clear decrease in the net flux of the polar region is detected in the slow rising phase of the current solar cycle. The decrease is more rapid in the north polar region than in the south. The decrease in the net flux is caused by a decrease in the number and size of the large flux concentrations as well as the appearance of patches with opposite polarity at lower latitudes. In contrast, we do not see temporal change in the magnetic flux associated with the smaller patches (1018?Mx) and that of the horizontal magnetic fields during the years 2008-2012.
机译:我们一直使用Hinode上的太阳光学望远镜监测太阳极磁场的年度变化,以记录它们在太阳最大值附近的演变和预期的反转。自动识别磁通量图中的所有磁贴片,以获得作为每个贴片的总磁通量的函数的数量密度和磁通量密度。每个贴片的检测磁通量范围超过四个数量级(1015-1020?Mx)。极区的磁通量的高端比安静的太阳高大约一个数量级,几乎比孔隙大。几乎所有大的贴片(≥1018?Mx)都具有相同的极性,而较小的贴片则具有两种极性的平衡。因此,整个极性区域的极性仅由大的磁性浓度决定。在当前太阳周期的缓慢上升阶段,检测到极区净通量明显减少。北极地区的下降比南部地区的下降更快。净通量的减少是由于大通量浓度的数量和大小的减少,以及在较低纬度出现极性相反的斑块引起的。相反,在2008-2012年期间,我们看不到与较小斑块(<1018?Mx)相关的磁通量和水平磁场的磁通量随时间的变化。

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