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首页> 外文期刊>The Astrophysical journal >Modeling Of The Extreme-ultraviolet And Soft X-ray Emission In A Solar Coronal Bright Point
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Modeling Of The Extreme-ultraviolet And Soft X-ray Emission In A Solar Coronal Bright Point

机译:太阳日冕亮点中的极端紫外线和柔和X射线发射的建模

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摘要

Previous studies have been able to reproduce both the observed intensities and the morphology of high-temperature solar plasma using steady state heating models. These models, however, have been unable to reproduce the lower temperature emission observed in active regions. Here we present results from numerical simulations of a coronal bright point. We use potential field extrapolations of a Kitt Peak magnetogram to compute the coronal field lines and populate them with solutions to the hydrostatic loop equations based on a volumetric heating function that scales as BIL, where B is the magnetic field strength averaged along a field line and L is the loop length. We consider the effects of altering the magnitude and scale height of the energy deposition and the effect of allowing the loop cross sections to expand proportionally to MB. We then use the computed densities and temperatures to calculate average intensities and simulated EUV and soft X-ray images and compared them to Yohkoh and SOHO observations. We find that our best-case model (apex heating of expanding loops) can reproduce the high-temperature emission, the general morphology of the lower temperature emission, and the majority of the average intensities of reliable lines over a wide range of temperatures to within ~20%. The morphology in the EUV visualizations, however, shows some differences from the observations. These results suggest the role of nonpotential or evolving magnetic fields, or dynamic processes, but indicate that departures from the potential field hydrostatic case may not be too large.
机译:以前的研究已经能够使用稳态加热模型重现高温太阳等离子体的强度和形态。但是,这些模型无法重现在活动区域​​中观察到的较低温度排放。在这里,我们介绍日冕亮点的数值模拟结果。我们使用基特峰磁极图的势场外推法计算日冕磁场线,并根据体积加热函数(按BIL标定)对静液压环方程的解进行填充,其中B是沿磁场线平均的磁场强度, L是循环长度。我们考虑了改变能量沉积的大小和尺度高度的效果,以及允许环路横截面按比例扩展至MB的效果。然后,我们使用计算出的密度和温度来计算平均强度以及模拟的EUV和软X射线图像,并将其与Yohkoh和SOHO观测值进行比较。我们发现,我们的最佳情况模型(扩展回路的顶点加热)可以重现高温辐射,低温辐射的一般形态以及在宽范围内(以内)的温度范围内可靠线路的大多数平均强度〜20%但是,EUV可视化中的形态显示出与观察结果有些差异。这些结果表明了无势或不断发展的磁场或动态过程的作用,但表明与势场静水力情况的偏离可能不会太大。

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