论文标题
电流通过J形和非J形耀斑丝带
Electric Currents through J-shaped and Non-J-shaped Flare Ribbons
论文作者
论文摘要
最近,在将二维标准耀斑模型扩展到三个维度的背景下,在下部太阳大气中表现出双J形丝带的太阳耀斑已经受到了越来越多的关注,这是由于光电电流通道和火炬丝之间的空间相关性而激发的。在这里,我们研究了通过耀斑丝带(称为合成的色带面积或SRA)扫除的光球区域的电流,其中有71个两ribbon耀斑的样品,其中36个是J形。流经一条色带的电流与通过另一条色带的电流高度相关,因此属于同一电流系统。该当前系统的非中性因素与火炬幅度无关,这意味着直接和返回电流都参与耀斑。在以下方面,J形耀斑不同于非J形耀斑:1)J形SRA中的电流密度明显小于非J形SRA中的电流,但是J形SRA及其相关的磁通量也明显更大。 2)通过SRA的电流与耀斑幅度呈正相关,但是与非J形耀斑相比,J形耀斑显示更强的相关性。 3)大多数(75 \%)的J形耀斑是爆发性的,而大多数(86 \%)的非J形耀斑被限制为;因此,与非J形耀斑相比,J形耀斑的主动区域更可能是乙状结肠。因此,J形耀斑构成了两米喇叭的独特子集,可能是喷发的代表。此外,我们发现将SRA及其相关的磁通量结合起来有可能区分喷发与受约束耀斑的区分。
Recently solar flares exhibiting a double J-shaped ribbons in the lower solar atmosphere have been paid increasing attention in the context of extending the two-dimensional standard flare model to three dimensions, as motivated by the spatial correlation between photospheric current channels and flare ribbons. Here we study the electric currents through the photospheric area swept by flare ribbons (termed synthesized ribbon area or SRA), with a sample of 71 two-ribbon flares, of which 36 are J-shaped. Electric currents flowing through one ribbon are highly correlated with those through the other, therefore belonging to the same current system. The non-neutrality factor of this current system is independent of the flare magnitude, implying that both direct and return currents participate in flares. J-shaped flares are distinct from non-J-shaped flares in the following aspects: 1) Electric current densities within J-shaped SRA are significantly smaller than those within non-J-shaped SRA, but J-shaped SRA and its associated magnetic flux are also significantly larger. 2) Electric currents through SRA are positively correlated with the flare magnitude, but J-shaped flares show stronger correlation than non-J-shaped flares. 3) The majority (75\%) of J-shaped flares are eruptive, while the majority (86\%) of non-J-shaped flares are confined; accordingly, hosting active regions of J-shaped flares are more likely to be sigmoidal than non-J-shaped flares. Thus, J-shaped flares constitute a distinct subset of two-ribbon flares, probably the representative of eruptive ones. Further, we found that combining SRA and its associated magnetic flux has the potential to differentiate eruptive from confined flares.