论文标题

冠状明亮点的物理特性及其在冠状孔内外的ALMA对应物的差异

Differences in physical properties of coronal bright points and their ALMA counterparts within and outside coronal holes

论文作者

Matković, F., Brajša, R., Temmer, M., Heinemann, S. G., Ludwig, H. -G., Saar, S. H., Selhorst, C. L., Skokić, I., Sudar, D.

论文摘要

这项研究使用单盘孔(CHS)的冠状明亮点(CBP)的亮度和面积,使用单次频段6观察到Atacama大毫米/毫米/毫米阵列(ALMA),结合了极端的(EUV)(euv)193 $ \ \ \ \ \ \ \ cirders {成像组件(AIA)和磁性图(HMI)在船上太阳动力学天文台(SDO)上获得的磁图。使用冠状孔(捕获)的分析工具收集的SDO/AIA图像从SDO/AIA图像中提取CH边界,并在SDO/AIA,SDO/HMI和ALMA数据中鉴定出CBP。在CHS外,对CHS和安静的太阳区域进行了ALMA和SDO/AIA图像的亮度和区域的测量。对测得的物理特性的统计分析导致CHS中CBP的ALMA和SDO/AIA数据的平均CBP亮度较低。根据CBP样本量,SDO/AIA数据的强度差异以及ALMA数据的亮度温度在CHS内部和外部CHS之间的亮度温度在2 $σ$至4.5 $σ$之间,显示了这两个CBP组之间的统计学意义差异。对于CBP区域,CH边界内的CBP平均显示出较小的区域,而SDO/AIA数据的两个CBP组之间的差异在1 $σ$和2 $σ$之间,而ALMA数据的差异最高为3.5 $σ$,表明CBP地区也有显着差异。鉴于测得的特性,我们得出结论,CHS内部的CBP平均趋于较小,但与CHS外部相比,CBP的平均值也较小。该结论可能指出了CBP周围局部CH区域的特定物理条件和特性,从而限制了CBP的最大可实现强度(温度)和大小。

This study investigates and compares brightness and area of coronal bright points (CBPs) inside and outside of coronal holes (CHs) using the single-dish Band 6 observations by the Atacama Large Millimeter/submillimeter Array (ALMA), combined with extreme-ultraviolet (EUV) 193 $\overset{\circ}{\mathrm{A}}$ filtergrams obtained by the Atmospheric Imaging Assembly (AIA) and magnetograms obtained by the Helioseismic and Magnetic Imager (HMI), both on board Solar Dynamics Observatory (SDO). The CH boundaries were extracted from the SDO/AIA images using the Collection of Analysis Tools for Coronal Holes (CATCH) and CBPs were identified in the SDO/AIA, SDO/HMI, and ALMA data. Measurements of brightness and areas in both ALMA and SDO/AIA images were conducted for CBPs within CHs and quiet Sun regions outside CHs. A statistical analysis of the measured physical properties resulted in a lower average CBP brightness in both ALMA and SDO/AIA data for CBPs within the CHs. Depending on the CBP sample size, the difference in intensity for the SDO/AIA data, and brightness temperature for the ALMA data, between the CBPs inside and outside CHs ranged from between 2$σ$ and 4.5$σ$, showing a statistically significant difference between those two CBP groups. For CBP areas, CBPs within the CH boundaries showed smaller areas on average, with the observed difference between the two CBP groups between 1$σ$ and 2$σ$ for the SDO/AIA data, and up to 3.5$σ$ for the ALMA data, indicating that CBP areas are also significantly different. Given the measured properties, we conclude that the CBPs inside CHs tend to be less bright on average, but also smaller in comparison to those outside of CHs. This conclusion might point to the specific physical conditions and properties of the local CH region around a CBP limiting the maximum achievable intensity (temperature) and size of a CBP.

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