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首页> 外文期刊>Solar physics >Comparative Study of the Three-Dimensional Thermodynamical Structure of the Inner Corona of Solar Minimum Carrington Rotations 1915 and 2081
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Comparative Study of the Three-Dimensional Thermodynamical Structure of the Inner Corona of Solar Minimum Carrington Rotations 1915 and 2081

机译:太阳能最小卡路顿旋转1915和2081的内电晕三维热力学结构的比较研究

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摘要

Using differential emission measure tomography (DEMT) based on time series of EUV images, we carry out a quantitative comparative analysis of the three-dimensional (3D) structure of the electron density and temperature of the inner corona (r < 1.25R(circle dot)) between two specific rotations selected from the last two solar minima, namely Carrington Rotations (CR) 1915 and CR-2081. The analysis places error bars on the results because of the systematic uncertainty of the sources. While the results for CR-2081 are characterized by a remarkable north-south symmetry, the southern hemisphere for CR-1915 exhibits higher densities and temperatures than the northern hemisphere. The core region of the streamer belt in both rotations is found to be populated by structures whose temperature decreases with height (called "down loops" in our previous articles). They are characterized by plasma beta greater than or similar to 1, and may be the result of the efficient dissipation of Alfven waves at low coronal heights. The comparative analysis reveals that the low latitudes of the equatorial streamer belt of CR-1915 exhibit higher densities than for CR-2081. This cannot be explained by the systematic uncertainties. In addition, the southern hemisphere of the streamer belt of CR-1915 is characterized by higher temperatures and density scale heights than for CR-2081. On the other hand, the coronal hole region of CR-1915 shows lower temperatures than for CR-2081. The reported differences are in the range approximate to 10-25%, depending on the specific physical quantity and region that is compared, as fully detailed in the analysis. For other regions and/or physical quantities, the uncertainties do not allow assessing the thermodynamical differences between the two rotations. Future investigation will involve a DEMT analysis of other Carrington rotations selected from both epochs, and also a comparison of their tomographic reconstructions with magnetohydrodynamical simulations of the inner corona.
机译:使用基于时间序列的EUV图像的差分发射测量断层扫描(DEMT),我们对内电晕的电子密度和温度的三维(3D)结构进行定量比较分析(R <1.25R(圆点))从最后两个太阳能最小值选择的两个特定旋转之间,即Carrington旋转(CR)1915和CR-2081。由于源的系统不确定性,分析将误差栏放置在结果上。虽然CR-2081的结果以北方南北对称为特征,但CR-1915的南半球表现出比北半球更高的密度和温度。发现两个旋转带中的炉带的芯区域被填充的结构填充,其温度随着我们之前的文章中的高度(称为“向下循环”)的温度降低。它们的特征在于血浆β大于或类似于1,并且可以是在低冠状高度处的Alfven波的有效耗散的结果。比较分析表明,CR-1915的赤道拖带带的低纬度表现出比CR-2081更高的密度。这不能通过系统的不确定性来解释。另外,CR-1915的炉带的南部半球的特征在于较高的温度和密度比例高于CR-2081。另一方面,CR-1915的冠状孔区域显示比CR-2081更低的温度。报告的差异在约10-25%的范围内,这取决于比较的特定物理量和区域,在分析中完全详细说明。对于其他区域和/或物理量,不确定性不允许评估两个旋转之间的热力学差异。未来的调查将涉及从两个时代选择的其他卡林顿轮换的演绎分析,以及与内电晕的磁性流体模拟的它们的断层重建比较。

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