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首页> 外文期刊>The Astrophysical Journal. Letters >DETECTION OF A FINE-SCALE DISCONTINUITY OF PHOTOSPHERIC MAGNETIC FIELDS ASSOCIATED WITH SOLAR CORONAL LOOP BRIGHTENINGS
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DETECTION OF A FINE-SCALE DISCONTINUITY OF PHOTOSPHERIC MAGNETIC FIELDS ASSOCIATED WITH SOLAR CORONAL LOOP BRIGHTENINGS

机译:与日冕冠增白有关的光球磁场的精细尺度不连续性的检测

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摘要

We present the transient brightening of a coronal loop and an associated fine-scale magnetic discontinuity detected in the photosphere. Utilizing the high-resolution data taken with the Fast Imaging Solar Spectrograph and InfraRed Imaging Magnetograph of the New Solar Telescope at Big Bear Solar Observatory, we detect a narrow lane of intense horizontal magnetic field representing a magnetic discontinuity. It was visible as a dark lane partially encircling a pore in the continuum image, and was located near one of the footpoints of a small coronal loop that experienced transient brightenings. The horizontal field strength gradually increased before the loop brightening, and then rapidly decreased in the impulsive phase of the brightening, suggesting the increase of the magnetic non-potentiality at the loop footpoint and the sudden release of magnetic energy via magnetic reconnection. Our results support the nanoflare theory that coronal heating events are caused by magnetic reconnection events at fine-scale magnetic discontinuities.
机译:我们提出了一个冠状环的瞬态增亮以及在光球中检测到的相关的精细磁性不连续性。利用大熊太阳能天文台的新型太阳望远镜的快速成像太阳光谱仪和红外成像磁力仪获得的高分辨率数据,我们可以检测到代表磁场不连续性的狭窄水平磁场。可见,它是一条连续车道图像中部分围绕孔隙的暗车道,并且位于小冠状环的脚点之一附近,该环经历了短暂的增亮。水平磁场强度在环路变亮之前逐渐增加,然后在增亮的脉冲阶段迅速降低,这表明在环路脚点处的磁非电势增加和通过磁重新连接而突然释放出磁能。我们的研究结果支持纳米火炬理论,即日冕加热事件是由细尺度磁不连续处的磁重连事件引起的。

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