...
首页> 外文期刊>The Astrophysical journal >FORWARD MODELING TRANSIENT BRIGHTENINGS AND MICROFLARES AROUND AN ACTIVE REGION OBSERVED WITH Hi-C
【24h】

FORWARD MODELING TRANSIENT BRIGHTENINGS AND MICROFLARES AROUND AN ACTIVE REGION OBSERVED WITH Hi-C

机译:在Hi-C观察到的活动区域周围进行瞬态增亮和微裂纹的正向建模

获取原文

摘要

Small-scale flare-like brightenings around active regions are among the smallest and most fundamental of energetic transient events in the corona, providing a testbed for models of heating and active region dynamics. In a previous study, we modeled a large collection of these microflares observed with Hinode/X-Ray Telescope (XRT) using EBTEL and found that they required multiple heating events, but could not distinguish between multiple heating events on a single strand, or multiple strands each experiencing a single heating event. We present here a similar study, but with extreme-ultraviolet data of Active Region 11520 from the High Resolution Coronal Imager (Hi-C) sounding rocket. Hi-C provides an order of magnitude improvement to the spatial resolution of XRT, and a cooler temperature sensitivity, which combine to provide significant improvements to our ability to detect and model microflare activity around active regions. We have found that at the spatial resolution of Hi-C (≈03), the events occur much more frequently than expected (57 events detected, only 1 or 2 expected), and are most likely made from strands of the order of 100?km wide, each of which is impulsively heated with multiple heating events. These findings tend to support bursty reconnection as the cause of the energy release responsible for the brightenings.
机译:活跃区域周围的小规模耀斑状增亮是电晕中能量瞬变事件中最小,最基本的部分,为加热和活跃区域动力学模型提供了测试平台。在先前的研究中,我们对使用EBTEL在Hinode / X射线望远镜(XRT)上观察到的大量微耀斑进行了建模,发现它们需要多个加热事件,但无法区分单条或多个加热事件每条都经历一个加热事件。我们在这里提出了一项类似的研究,但是使用了高分辨率日冕成像仪(Hi-C)探测火箭发射的有源区域11520的极紫外数据。 Hi-C使XRT的空间分辨率提高了一个数量级,并降低了温度敏感性,两者相结合大大改善了我们检测和建模活动区域周围微火炬活动的能力。我们发现,在Hi-C(≈03)的空间分辨率下,事件发生的频率比预期的要多得多(检测到57个事件,仅预期的1或2个事件),并且最有可能是由100数量级的链构成的。公里宽,每一个都通过多次加热事件进行脉冲加热。这些发现倾向于支持突发性重新连接,将其作为导致发亮的能量释放的原因。

著录项

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