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Automated Temperature and Emission Measure Analysis of Coronal Loops and Active Regions Observed with the Atmospheric Imaging Assembly on the Solar Dynamics Observatory (SDO/AIA)

机译:在太阳动力学天文台(SDO / AIA)上用大气成像组件观测到的冠状圈和活动区域的自动温度和排放量度分析

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摘要

We developed numerical codes designed for automated analysis of SDO/AIA image datasets in the six coronal filters, including: i) coalignment test between different wavelengths with measurements of the altitude of the EUV-absorbing chromosphere, ii) self-calibration by empirical correction of instrumental response functions, iii) automated generation of differential emission measure [DEM] distributions with peak-temperature maps [T p(x,y)] and emission measure maps [EM p(x,y)] of the full Sun or active region areas, iv) composite DEM distributions [dEM(T)/dT] of active regions or subareas, v) automated detection of coronal loops, and vi) automated background subtraction and thermal analysis of coronal loops, which yields statistics of loop temperatures [T e], temperature widths [σ T], emission measures [EM], electron densities [n e], and loop widths [w]. The combination of these numerical codes allows for automated and objective processing of numerous coronal loops. As an example, we present the results of an application to the active region NOAA 11158, observed on 15 February 2011, shortly before it produced the largest (X2.2) flare during the current solar cycle. We detect 570 loop segments at temperatures in the entire range of log(T e)=5.7 – 7.0 K and corroborate previous TRACE and AIA results on their near-isothermality and the validity of the Rosner–Tucker–Vaiana (RTV) law at soft X-ray temperatures (T≳2 MK) and its failure at lower EUV temperatures.
机译:我们开发了用于自动分析六个冠状滤镜中SDO / AIA图像数据集的数字代码,其中包括:i)不同波长之间的共对准测试,以及测量EUV吸收色球的高度,ii)通过经验校正来自动校准仪器响应函数,iii)自动生成全太阳或活动区域的峰值温度图[T p(x,y)]和排放量图[EM p(x,y)]的差分发射量度[DEM]分布iv)活动区域或子区域的复合DEM分布[dEM(T)/ dT],v)冠状loop的自动检测,以及vi)冠状loop的自动背景减法和热分析,可得出回路温度的统计数据[T e],温度宽度[σT],发射量度[EM],电子密度[ne]和回路宽度[w]。这些数字代码的组合允许自动和客观地处理许多冠状环。例如,我们介绍了对活动区NOAA 11158的应用结果,该结果于2011年2月15日观测到,即在当前太阳周期期间产生最大耀斑(X2.2)之前不久。我们在整个log(T e)= 5.7 – 7.0 K范围内的温度下检测到570个环段,并证实了先前的TRACE和AIA结果在近似等温性以及Rosner-Tucker-Vaiana(RTV)定律在软X射线温度(T≳2MK)及其在较低EUV温度下的故障。

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