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首页> 外文期刊>The Astrophysical journal >RELATIONSHIP BETWEEN COLD AND HOT POST-SOLAR FLARE LOOPS AND THE IMPACT ON THE RECONNECTION FLARE MODEL
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RELATIONSHIP BETWEEN COLD AND HOT POST-SOLAR FLARE LOOPS AND THE IMPACT ON THE RECONNECTION FLARE MODEL

机译:太阳后耀斑冷热环之间的关系及其对再连接耀斑模型的影响

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The relationship between cold and hot postflare loops has been studied using the 1973 September 7 and 1974 January 15 flare images recorded by the Skylab S082 spectroheliograph. The images are of intense emission lines in the extreme ultraviolet region that span the 1 x 10~6 (He I) to 3.2 x 10~6 K (Ni XVIII) temperature range. The analysis of the images does not support the widely held notion that cold loops are always smaller than hot loops, lie below hot loops, and are similar in shape. It is found that the coldest and hottest loops often differ significantly in size and shape. Based on the analysis of a time sequence of Skylab images of cold and hot loops, there is no evidence that the loop system expands in a discontinuous manner, as would be the case if higher loops were sequentially formed and activated by reconnection of the magnetic field. It is found that the individual coronal loops expand in a gradual manner. These conclusions are consistent with images of postflare loop systems in the 10~7 K range that were recorded by the soft X-ray telescope on the Yohkoh spacecraft. Previous observations and interpretations of postflare loop systems, which led to the formulation of the reconnection flare model, are reexamined. In light of recent high-quality imagery that spans the temperature range from 10~4 to 10~7 K, it is concluded that the observations do not support all aspects of the reconnection flare model as presently articulated. Elements of the reconnection flare model that are inconsistent with the modern observations should be reconsidered.
机译:已使用Skylab S082光谱仪记录的1973年9月7日和1974年1月15日的耀斑图像研究了冷和热耀斑后回圈之间的关系。这些图像是在1 x 10〜6(He I)到3.2 x 10〜6 K(Ni XVIII)温度范围的极端紫外线区域中的强烈发射线。对图像的分析不支持广泛接受的观念,即冷循环总是小于热循环,位于热循环之下,并且形状相似。发现最冷和最热的回路通常在尺寸和形状上有显着差异。根据对冷热回路Skylab图像的时间序列的分析,没有证据表明回路系统以不连续的方式扩展,就像通过磁场的重新连接顺序形成并激活更高的回路的情况一样。发现各个冠状环以逐渐的方式扩展。这些结论与Yohkoh航天器上的软X射线望远镜记录的10〜7 K范围内的耀斑后环系统图像一致。重新检查了以前的火炬后回路系统的观察和解释,从而形成了重新连接火炬模型。根据最近的高质量图像(温度范围从10〜4到10〜7 K),可以得出结论,这些观察结果并不支持当前阐明的重新连接耀斑模型的所有方面。应重新考虑与现代观测不一致的重连耀斑模型的要素。

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