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The Mouse that Roared: A SuperFlare from the dMe Flare Star EV Lac Detected by Swift and Konus-Wind

机译:咆哮的老鼠:Swift和Konus-Wind检测到的dMe Flare Star EV Lac中的超光晕

摘要

We report on a large stellar flare from the nearby dMe flare star EV Lac observed by the Swift and Konus-Wind satellites and the Liverpool Telescope. It is the first large stellar flare from a dMe flare star to result in a Swift trigger based on its hard X-ray intensity. Its peak fx from 0.3-100 keV of 5.3×10-8 erg cm-2 s-1 is nearly 7000 times larger than the star's quiescent coronal flux, and the change in magnitude in the white filter is ≥4.7. This flare also caused a transient increase in EV Lac's bolometric luminosity (Lbol) during the early stages of the flare, with a peak estimated LX/Lbol ˜3.1. We apply flare loop hydrodynamic modeling to the plasma parameter temporal changes to derive a loop semi-length of l/R★= 0.37±0.07. The soft X-ray spectrum of the flare reveals evidence of iron Kα emission at 6.4 keV. We model the Kα emission as fluorescence from the hot flare source irradiating the photospheric iron, and derive loop heights of h/R★=0.1, consistent within factors of a few with the heights inferred from hydrodynamic modeling. The Kα emission feature shows variability on time scales of ˜200 s which is difficult to interpret using the pure fluorescence hypothesis. We examine Kα emission produced by collisional ionization from accelerated particles, and find parameter values for the spectrum of accelerated particles which can accommodate the increased amount of Kα flux and the lack of observed nonthermal emission in the 20-50 keV spectral region.
机译:我们报告了附近的dMe耀斑恒星EV Lac产生的大型恒星耀斑,该星系由Swift和Konus-Wind卫星以及利物浦望远镜观测到。这是来自dMe耀斑恒星的第一个大型恒星耀斑,其硬X射线强度会导致Swift触发。它的峰值fx从5.3×10-8 erg cm-2 s-1的0.3-100 keV开始,比恒星的静态日冕通量大近7000倍,白色滤光片的大小变化≥4.7。该耀斑还在耀斑的早期引起了EV Lac的辐射热亮度(Lbol)的瞬时增加,估计的峰值LX / Lbol约为3.1。我们将火炬回路流体动力学建模应用于等离子体参数的时间变化,以得出l / R★= 0.37±0.07的回路半长。火炬的软X射线光谱揭示了在6.4 keV处铁Kα发射的证据。我们将Kα发射建模为来自火炬源照射光球铁的荧光,并推导h / R★= 0.1的环路高度,与流体动力学模型推断的高度在少数因素内保持一致。 Kα发射特征显示出约200 s的时间尺度上的可变性,这很难用纯荧光假设来解释。我们检查了由加速粒子碰撞电离产生的Kα发射,并找到了加速粒子光谱的参数值,该参数值可以适应增加的Kα通量和在20-50 keV光谱区域内观察不到的非热发射。

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