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首页> 外文期刊>The Astrophysical Journal. Letters >CHROMOSPHERIC AND CORONAL OBSERVATIONS OF SOLAR FLARES WITH THE HELIOSEISMIC AND MAGNETIC IMAGER
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CHROMOSPHERIC AND CORONAL OBSERVATIONS OF SOLAR FLARES WITH THE HELIOSEISMIC AND MAGNETIC IMAGER

机译:利用光源性和磁性成像仪的太阳能耀斑的色斑和冠状观测

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摘要

We report observations of white-light ejecta in the low corona, for two X-class flares on 2013 May 13, using data from the Helioseismic and Magnetic Imager (HMI) of the Solar Dynamics Observatory. At least two distinct kinds of sources appeared (chromospheric and coronal), in the early and later phases of flare development, in addition to the white-light footpoint sources commonly observed in the lower atmosphere. The gradual emissions have a clear identification with the classical loop-prominence system, but are brighter than expected and possibly seen here in the continuum rather than line emission. We find the HMI flux exceeds the radio/X-ray interpolation of the bremsstrahlung produced in the flare soft X-ray sources by at least one order of magnitude. This implies the participation of cooler sources that can produce free-bound continua and possibly line emission detectable by HMI. One of the early sources dynamically resembles coronal rain, appearing at a maximum apparent height and moving toward the photosphere at an apparent constant projected speed of 134 8 km s~(?1). Not much literature exists on the detection of optical continuum sources above the limb of the Sun by non-coronagraphic instruments and these observations have potential implications for our basic understanding of flare development, since visible observations can in principle provide high spatial and temporal resolution.
机译:我们在2013年5月13日的两个X级耀斑中报告了对低电晕的白光喷射物的观察,使用来自太阳能动力学天文台的HelioSeismic和磁性成像器(HMI)的数据。除了在较低大气中通常观察到的白光足部来源之外,在闪光开发的早期和后期阶段,至少出现两个不同的源(冠状物和冠状)。逐渐排放具有明确的循环突出系统的识别,但比预期更亮,并且可能在连续体中看到的,而不是线排放。我们发现HMI通量超过闪光软X射线源中产生的Bremsstrah隆的无线电/ X射线插值,至少一个数量级。这意味着冷却器来源的参与可以产生自由结合的连续源和可能的HMI可检测的线排放。其中一个早期来源动态地类似于冠状雨,以最大明显的高度出现,并以134 8km的表观恒定的投影速度朝向光翼移动〜(?1)。不太多的文学存在于通过非血管术仪器检测光学连续体以上的光学连续体源,这些观察结果对我们对火炬发育的基本了解具有潜在影响,因为可见观察原则上可以提供高空间和时间分辨率。

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