论文标题

在太阳活性区域中爆发的优势超过4--8 MK冠状血浆的稳定加热:使用最小,最大和平均亮度的地图进行定量

Dominance of Bursty over Steady Heating of the 4--8 MK Coronal Plasma in a Solar Active Region: Quantification using Maps of Minimum, Maximum, and Average Brightness

论文作者

Tiwari, Sanjiv K., Wilkerson, Lucy A., Panesar, Navdeep K., Moore, Ronald L., Winebarger, Amy R.

论文摘要

表征活性区域(AR)冠状加热的挑战是将瞬态(爆发)环与扩散背景(稳定)加热分离。我们提出了一种量化冠状动脉加热和稳定成分的方法,将其应用于SDO/AIA观察到的AR的Fexviii(HOT94)发射。每个像素的最大,最小和平均亮度值在24小时内产生最大亮度图,最小亮度图和AR的平均亮度图。这三个地图的运行集来自重复该过程的每个时间步骤,即运行20、16、12、8、5、3、1和0.5小时的窗口。从每个运行窗口的三个地图集中,我们获得了AR的三个相应的光度光曲线。我们发现:(1)随着时间窗口的减小,最小亮度映射仪与平均光度映射仪的时间平均比率的增加比率增加,并且随着窗口的降低,最大亮度映射度映射度与平均光泽度映射效果的最大时间平均比率降低。 (2)对于24小时的窗口,最小亮度图的光度为平均光度图的光度的5%,表明AR的HOT94亮度最多来自加热,这是稳定的24小时。 (3)对于30分钟的运行窗口,HOT94光度较高的HOT94光度比例的上限将增加到33%。这要求在此AR中加热4--8 MK等离子体的爆发持续不到30分钟:最多三分之一的加热稳定30分钟。

A challenge in characterizing active region (AR) coronal heating is in separating transient (bursty) loop heating from the diffuse background (steady) heating. We present a method of quantifying coronal heating's bursty and steady components in ARs, applying it to FeXVIII (hot94) emission of an AR observed by SDO/AIA. The maximum, minimum, and average brightness values for each pixel, over a 24 hour period, yield a maximum-brightness map, a minimum-brightness map, and an average-brightness map of the AR. Running sets of such three maps come from repeating this process for each time step of running windows of 20, 16, 12, 8, 5, 3, 1 and 0.5 hours. From each running window's set of three maps, we obtain the AR's three corresponding luminosity light curves. We find: (1) The time-averaged ratio of minimum-brightness-map luminosity to average-brightness-map luminosity increases as the time window decreases, and the time-averaged ratio of maximum-brightness-map luminosity to average-brightness-map luminosity decreases as the window decreases. (2) For the 24-hour window, the minimum-brightness map's luminosity is 5% of the average-brightness map's luminosity, indicating that at most 5% of the AR's hot94 luminosity is from heating that is steady for 24 hours. (3) This upper limit on the fraction of the hot94 luminosity from steady heating increases to 33% for the 30-minute running window. This requires that the heating of the 4--8 MK plasma in this AR is mostly in bursts lasting less than 30 minutes: at most a third of the heating is steady for 30 minutes.

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