论文标题
双极短暂的活动区域,磁通量取消和太阳磁爆炸
Bipolar Ephemeral Active Regions, Magnetic Flux Cancellation, and Solar Magnetic Explosions
论文作者
论文摘要
我们检查了太阳冠状孔中的10个双极短暂活性区域(熊)的摇篮到斑块磁性演变,尤其是磁演化的方面,导致43个明显的微叶片事件中的每一个。数据来自太阳能动力学天文台:211冠状图像和视线光谱图。我们发现证据表明,(1)每个微叶片事件都是磁爆炸,导致微型火炬拱廊跨越了熊的海葵磁场的爆炸叶的极性反转线(PIL); (2)相对于熊出现的磁通杆欧米茄环,海葵的爆炸叶可以是内叶,外部叶或内部和外部叶; (3)5事件是狭窄的爆炸,20个事件主要是限制的爆炸,18个事件是井喷爆炸,它们是磁爆炸的微型,这些磁爆炸使冠状动脉质量弹出(CMES); (4)与Moore等人(2010年)的期望相反,在Omega Loops出现期间,熊内部的18个井喷事件都没有爆炸; (5)在43个微叶片事件中的每个事件中,在海葵的爆炸叶的PIL处都取消磁通量。从在所有43次微型活动之前和期间发现在下面的PIL中发现明显的通量取消,熊也是熊是所有较大的太阳能双极活性区的微型,显然是在日光浴活动中以相同的方式取消磁通量,从而为许多主要的弹药和CMES和CMES和CMES造成了磁性爆炸的准备。
We examine the cradle-to-grave magnetic evolution of 10 bipolar ephemeral active regions (BEARs) in solar coronal holes, especially aspects of the magnetic evolution leading to each of 43 obvious microflare events. The data are from Solar Dynamics Observatory: 211 A coronal EUV images and line-of-sight photospheric magnetograms. We find evidence that (1) each microflare event is a magnetic explosion that results in a miniature flare arcade astride the polarity inversion line (PIL) of the explosive lobe of the BEARs anemone magnetic field; (2) relative to the BEAR's emerged flux-rope omega loop, the anemone's explosive lobe can be an inside lobe, an outside lobe, or an inside & outside lobe; (3) 5 events are confined explosions, 20 events are mostly-confined explosions, and 18 events are blowout explosions, which are miniatures of the magnetic explosions that make coronal mass ejections (CMEs); (4) contrary to the expectation of Moore et al (2010), none of the 18 blowout events explode from inside the BEARs omega loop during the omega loops emergence; (5) before and during each of the 43 microflare events there is magnetic flux cancellation at the PIL of the anemone's explosive lobe. From finding evident flux cancellation at the underlying PIL before and during all 43 microflare events - together with BEARs evidently being miniatures of all larger solar bipolar active regions - we expect that in essentially the same way, flux cancellation in sunspot active regions prepares and triggers the magnetic explosions for many major flares and CMEs.