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首页> 外文期刊>The Astrophysical journal >The Role of Flux Cancellation in Eruptions from Bipolar ARs
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The Role of Flux Cancellation in Eruptions from Bipolar ARs

机译:磁通消除在双极AR爆发中的作用

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The physical processes or trigger mechanisms that lead to the eruption of coronal mass ejections (CMEs), the largest eruptive phenomenon in the heliosphere, are still undetermined. Low-altitude magnetic reconnection associated with flux cancellation appears to play an important role in CME occurrence as it can form an eruptive configuration and reduce the magnetic flux that contributes to the overlying, stabilizing field. We conduct the first comprehensive study of 20 small bipolar ARs (ARs) in order to probe the role of flux cancellation as an eruption trigger mechanism. We categorize eruptions from the bipolar regions into three types related to location, and find that the type of eruption produced depends on the evolutionary stage of the AR. In addition, we find that ARs that form eruptive structures by flux cancellation (low-altitude reconnection) had, on average, lower flux cancellation rates than the AR sample as a whole. Therefore, while flux cancellation plays a key role, by itself it is insufficient for the production of an eruption. The results provide supporting evidence that although flux cancellation in a sheared arcade may be able to build an eruptive configuration, a successful eruption depends upon the removal of sufficient overlying and stabilizing field. Convergence of the bipole polarities also appears to be present in regions that produce an eruption. These findings have important implications for understanding the physical processes that occur on our Sun in relation to CMEs and for space weather forecasting.
机译:导致日冕物质喷发(CME)爆发的物理过程或触发机制仍未确定,这是日光层中最大的喷发现象。与通量抵消相关的低空磁重连接似乎在CME发生中起重要作用,因为它可以形成喷发形态并减少有助于上方稳定磁场的磁通量。为了进行磁通抵消作为喷发触发机制的作用,我们对20个小型双极AR(AR)进行了首次全面研究。我们将双极地区的爆发分为与位置相关的三种类型,发现产生的喷发类型取决于AR的演化阶段。此外,我们发现,通过通量抵消(低空重新连接)形成喷发结构的AR的通量抵消率平均低于整个AR样本。因此,尽管通量抵消起着关键作用,但它本身不足以产生喷发。该结果提供了支持性证据,尽管尽管在剪切拱廊中消除通量可能能够建立喷发形态,但成功的喷发取决于去除足够的上覆和稳定场。在产生喷发的区域中似乎也存在双极极性的会聚。这些发现对于理解太阳与CME有关的物理过程以及太空天气预报具有重要意义。

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