首页> 外文期刊>The Astrophysical Journal. Letters >DISCOVERY OF FINELY STRUCTURED DYNAMIC SOLAR CORONA OBSERVED IN THE Hi-C TELESCOPE
【24h】

DISCOVERY OF FINELY STRUCTURED DYNAMIC SOLAR CORONA OBSERVED IN THE Hi-C TELESCOPE

机译:在Hi-C望远镜中观察到的精细结构的动态日冕的发现

获取原文
获取原文并翻译 | 示例
       

摘要

In the Summer of 2012, the High-resolution Coronal Imager (Hi-C) flew on board a NASA sounding rocket and collected the highest spatial resolution images ever obtained of the solar corona. One of the goals of the Hi-C flight was to characterize the substructure of the solar corona. We therefore examine how the intensity scales from AIA resolution to Hi-C resolution. For each low-resolution pixel, we calculate the standard deviation in the contributing high-resolution pixel intensities and compare that to the expected standard deviation calculated from the noise. If these numbers are approximately equal, the corona can be assumed to be smoothly varying, i.e., have no evidence of substructure in the Hi-C image to within Hi-C's ability to measure it given its throughput and readout noise. A standard deviation much larger than the noise value indicates the presence of substructure. We calculate these values for each low-resolution pixel for each frame of the Hi-C data. On average, 70% of the pixels in each Hi-C image show no evidence of substructure. The locations where substructure is prevalent is in the moss regions and in regions of sheared magnetic field.We also find that the level of substructure varies significantly over the roughly 160 s of the Hi-C data analyzed here. This result indicates that the finely structured corona is concentrated in regions of heating and is highly time dependent.
机译:2012年夏天,高分辨率日冕成像仪(Hi-C)乘上了NASA探测火箭,并收集了有史以来获得的日冕最高分辨率的图像。 Hi-C飞行的目标之一是表征日冕的子结构。因此,我们研究了强度如何从AIA分辨率缩放到Hi-C分辨率。对于每个低分辨率像素,我们计算贡献的高分辨率像素强度中的标准偏差,并将其与根据噪声计算出的预期标准偏差进行比较。如果这些数目近似相等,则可以假定电晕平滑变化,即在给定吞吐量和读出噪声的情况下,没有证据表明Hi-C图像中存在子结构。比噪声值大得多的标准偏差表示存在子结构。我们为Hi-C数据的每一帧计算每个低分辨率像素的这些值。平均而言,每个Hi-C图像中70%的像素均未显示出子结构的迹象。子结构普遍存在的位置是在苔藓区域和剪切磁场区域中。我们还发现,在这里分析的Hi-C数据大约160 s内,子结构的水平发生了显着变化。该结果表明,精细结构的电晕集中在加热区域中,并且高度依赖时间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号