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Mass motion in upper solar chromosphere detected from solar eclipse observation

机译:通过日食观测发现太阳上层色球的质量运动

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The eclipse-observed emission lines formed in the upper solar atmosphere can be used to diagnose the atmosphere dynamics which provides an insight to the energy balance of the outer atmosphere. In this paper, we analyze the spectra formed in the upper chromospheric region by a new instrument called Fiber Arrayed Solar Optic Telescope (FASOT) around the Gabon total solar eclipse on November 3, 2013. The double Gaussian fits of the observed profiles are adopted to show enhanced emission in line wings, while red-blue (RB) asymmetry analysis informs that the cool line (about 10(4) K) profiles can be decomposed into two components and the secondary component is revealed to have a relative velocity of about 16-45 km s(-1). The other profiles can be reproduced approximately with single Gaussian fits. From these fittings, it is found that the matter in the upper solar chromosphere is highly dynamic. The motion component along the line-of-sight has a pattern asymmetric about the local solar radius. Most materials undergo significant red shift motions while a little matter show blue shift. Despite the discrepancy of the motion in different lines, we find that the width and the Doppler shifts both are function of the wavelength. These results may help us to understand the complex mass cycle between chromosphere and corona.
机译:在高层太阳大气中形成的日食观测发射线可用于诊断大气动力学,从而洞悉外部大气的能量平衡。在本文中,我们使用一种称为“光纤阵列太阳望远镜”(FASOT)的新仪器分析了2013年11月3日在加蓬日全食周围在较高色球区中形成的光谱。对观测到的剖面采用双高斯拟合来拟合线翼显示出增强的发射,而红蓝(RB)不对称分析表明,冷线(大约10(4)K)轮廓可以分解为两个分量,并且次要分量的相对速度为16 -45公里s(-1)。其他轮廓可以通过单个高斯拟合近似复制。从这些拟合中,可以发现高层太阳色球中的物质是高度动态的。沿视线的运动分量具有关于局部太阳半径不对称的模式。大多数材料会发生明显的红移运动,而少量物质会显示蓝移。尽管不同行的运动存在差异,但我们发现宽度和多普勒频移均是波长的函数。这些结果可能有助于我们了解色球与日冕之间的复杂质量循环。

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