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Seismic Emissions from a Highly Impulsive M6.7 Solar Flare

机译:高度脉冲M6.7太阳耀斑的地震辐射

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On 10 March 2001 the active region NOAA 9368 produced an unusually impulsive solar flare in close proximity to the solar limb. This flare has previously been studied in great detail, with observations classifying it as a type 1 white-light flare with a very hard spectrum in hard X-rays. The flare was also associated with a type II radio burst and coronal mass ejection. The flare emission characteristics appeared to closely correspond to previous instances of seismic emission from acoustically active flares. Using standard local helioseismic methods, we identified the seismic signatures produced by the flare that, to date, is the least energetic (in soft X-rays) of the flares known to have generated a detectable acoustic transient. Holographic analysis of the flare shows a compact acoustic source strongly correlated with the impulsive hard X-rays, visible continuum, and radio emission. Time – distance diagrams of the seismic waves emanating from the flare region also show faint signatures, mainly in the eastern sector of the active region. The strong spatial coincidence between the seismic source and the impulsive visible continuum emission reinforces the theory that a substantial component of the seismic emission seen is a result of sudden heating of the low photosphere associated with the observed visible continuum emission. Furthermore, the low-altitude magnetic loop structure inferred from potential-field extrapolations in the flaring region suggests that there is a significant anti-correlation between the seismicity of a flare and the height of the magnetic loops that conduct the particle beams from the corona.
机译:2001年3月10日,活动区NOAA 9368在靠近太阳肢的地方产生了异常脉冲的太阳耀斑。以前已经对该光斑进行了详尽的研究,观察发现它被归类为1型白光光斑,在硬X射线中光谱非常硬。耀斑还与II型无线电爆发和日冕物质抛射有关。耀斑的发射特性似乎与声活跃耀斑的地震发射的先前实例非常接近。使用标准的局部日震方法,我们确定了火炬产生的地震信号,到目前为止,该信号是已知产生可检测到的瞬变的火炬中能量最低的(在软X射线中)。耀斑的全息分析表明,紧凑的声源与脉冲硬X射线,可见的连续谱和无线电发射密切相关。从耀斑区域发出的地震波的时间-距离图也显示出微弱的信号,主要在活动区域​​的东部。地震源与脉冲可见连续谱发射之间的强烈空间一致性强化了这样的理论,即所见地震发射的实质部分是与观测到的可见连续谱发射相关的低光球突然加热的结果。此外,从扩口区域的势场外推法推断出的低空磁环结构表明,在耀斑的地震活动性与传导来自电晕的粒子束的磁环高度之间存在显着的反相关性。

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