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首页> 外文期刊>The Astrophysical Journal. Letters >RAPID ENHANCEMENT OF SHEARED EVERSHED FLOW ALONG THE NEUTRAL LINE ASSOCIATED WITH AN X6.5 FLARE OBSERVED BY HINODE
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RAPID ENHANCEMENT OF SHEARED EVERSHED FLOW ALONG THE NEUTRAL LINE ASSOCIATED WITH AN X6.5 FLARE OBSERVED BY HINODE

机译:沿着Hinode观察到的X6.5闪光相关的中性线的剪切evershed流动的快速增强

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摘要

We present G-band and Ca ii H observations of NOAA AR 10930 obtained by Hinode/SOT on 2006 December 6 covering an X6.5 flare. The Local Correlation Tracking technique was applied to the foreshortening-corrected G-band image series to acquire horizontal proper motions in this complex βγ δ active region. With the continuous high-quality, spatial and temporal resolution G-band data, we not only confirm the rapid decay of outer penumbrae and darkening of the central structure near the flaring neutral line, but also unambiguously detect for the first time the enhancement of the sheared Evershed flow (average horizontal flow speed increased from 330 ± 3.1 to 403 ± 4.6 m s~(-1)) along the neutral line right after the eruptive white-light flare. Post-flare Ca ii H images indicate that the originally fanning out field lines at the two sides of the neutral line get connected. Since penumbral structure and Evershed flow are closely related to photospheric magnetic inclination or horizontal field strength, we interpret the rapid changes of sunspot structure and surface flow as the result of flare-induced magnetic restructuring down to the photosphere. The magnetic fields turn from fanning out to inward connection causing outer penumbrae decay, meanwhile those near the flaring neutral line become more horizontal leading to stronger Evershed flow there. The inferred enhancement of horizontal magnetic field near the neutral line is consistent with recent magnetic observations and theoretical predictions of flare-invoked photospheric magnetic field change.
机译:我们展示了由Hinode / SOT获得的NOAA AR 10930的G-BAND和CA II H观察,于2006年12月6日覆盖X6.5耀斑。将局部相关性跟踪技术应用于eFShortenting校正的G波段图像系列,以在该复杂βγδ活动区域中获取水平适当的运动。随着连续的高质量,空间和时间分辨率的G频段数据,我们不仅确认了外层的快速衰变和燃烧中性线附近的中央结构的变暗,也明确地检测了第一次增强的增强剪切的闪蒸流量(平均水平流量速度从爆发的白光火炬发出后沿着中性线增加到330±3.1至403±4.6ms)。发布后CA II I II H图像表明中性线两侧的最初扇动出现场线路连接。由于Penumbral结构和evershed流程与拍摄磁性倾斜或水平场强密切相关,因此由于闪光引起的磁性重组到Photosphere,因此解释了太阳黑子结构和表面流动的快速变化。磁场从扇动到向内连接导致外侧Penumbrae衰减,同时燃烧中性线附近的那些变得更加水平,导致在那里更强大的evershed流动。中性线附近的水平磁场推断增强与最近的磁观察和爆发型拍摄的射击光子磁场变化的理论预测一致。

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