论文标题

对nustar的硬X射线观察到的安静的太阳特征的首次调查

The First Survey of Quiet Sun Features Observed in Hard X-Rays With NuSTAR

论文作者

Paterson, Sarah, Hannah, Iain G., Grefenstette, Brian W., Hudson, Hugh, Krucker, Säm, Glesener, Lindsay, White, Stephen M., Smith, David M.

论文摘要

我们使用核光谱望远镜阵列(Nustar)(HXR焦点望远镜望远镜望远镜)介绍了在硬X射线(HXR)中观察到的安静的太阳特征的首次调查。最近的太阳最小值与Nustar的高灵敏度相结合,为在安静的太阳中的一系列特征上执行第一个HXR成像光谱的独特机会。通过研究这些特征的HXR发射,我们可以检测或限制高温(> 5 MK)或非热源来源的存在,以帮助了解它们与更大的更伟大的太阳现象之间的关系,并确定它们对加热太阳大气的贡献。我们报告了2018年9月28日在Nustar全盘宁静的太阳马赛克中观察到的几个功能,这是Nustar安静的阳光观察活动中的第一个功能,其中大部分包括X射线明亮点的稳定特征和后来演变为活跃地区的新兴通量区域,以及短寿命。我们发现特征的HXR光谱与温度介于2.0-3.2 mk之间的等温模型非常融合。将Nustar数据与SDO/AIA的NUSTAR数据与SDO/AIA的X射线发射较软,我们恢复了差分排放措施,从而确认了4 MK以上的显着发射几乎没有明显的发射。 NUSTAR HXR光谱使我们能够约束可能与NULL HXR检测一致的可能的非热发射。我们发现,只有一个特征(射流)是潜在的非热上限,能够为观察到的加热供电。但是,即使在这里,非热电子分布也必须非常陡峭(有效单能),在3-4 KEV之间的能量截止较低。因此,发现2018年9月数据中发现的典型安静的太阳特征中的温度较高或非热源很弱(如果存在的话)非常弱。

We present the first survey of quiet Sun features observed in hard X-rays (HXRs), using the the Nuclear Spectroscopic Telescope ARray (NuSTAR), a HXR focusing optics telescope. The recent solar minimum combined with NuSTAR's high sensitivity has presented a unique opportunity to perform the first HXR imaging spectroscopy on a range of features in the quiet Sun. By studying the HXR emission of these features we can detect or constrain the presence of high temperature (>5 MK) or non-thermal sources, to help understand how they relate to larger more energetic solar phenomena, and determine their contribution to heating the solar atmosphere. We report on several features observed in the 28 September 2018 NuSTAR full-disk quiet Sun mosaics, the first of the NuSTAR quiet Sun observing campaigns, which mostly include steady features of X-ray bright points and an emerging flux region which later evolved into an active region, as well as a short-lived jet. We find that the features' HXR spectra are well fitted with isothermal models with temperatures ranging between 2.0-3.2 MK. Combining the NuSTAR data with softer X-ray emission from Hinode/XRT and EUV from SDO/AIA we recover the differential emission measures, confirming little significant emission above 4 MK. The NuSTAR HXR spectra allow us to constrain the possible non-thermal emission that would still be consistent with a null HXR detection. We found that for only one of the features (the jet) was there a potential non-thermal upper limit capable of powering the heating observed. However, even here the non-thermal electron distribution had to be very steep (effectively mono-energetic) with a low energy cut-off between 3-4 keV. The higher temperature or non-thermal sources in the typical quiet Sun features found in this September 2018 data are therefore found to be very weak, if present at all.

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