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CIRCULAR RIBBON FLARES AND HOMOLOGOUS JETS

机译:圆形丝带喇叭裤和高腰牛仔裤

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摘要

Solar flare emissions in the chromosphere often appear as elongated ribbons on both sides of the magnetic polarity inversion line (PIL), which has been regarded as evidence of a typical configuration of magnetic reconnection. However, flares having a circular ribbon have rarely been reported, although it is expected in the fan-spine magnetic topology involving reconnection at a three-dimensional (3D) coronal null point. We present five circular ribbon flares with associated surges, using high-resolution and high-cadence Hα blue wing observations obtained from the recently digitized films of Big Bear Solar Observatory. In all the events, a central parasitic magnetic field is encompassed by the opposite polarity, forming a circular PIL traced by filament material. Consequently, a flare kernel at the center is surrounded by a circular flare ribbon. The four homologous jet-related flares on 1991 March 17 and 18 are of particular interest, as (1) the circular ribbons brighten sequentially, with cospatial surges, rather than simultaneously, (2) the central flare kernels show an intriguing "round-trip" motion and become elongated, and (3) remote brightenings occur at a region with the same magnetic polarity as the central parasitic field and are co-temporal with a separate phase of flare emissions. In another flare on 1991 February 25, the circular flare emission and surge activity occur successively, and the event could be associated with magnetic flux cancellation across the circular PIL. We discuss the implications of these observations combining circular flare ribbons, homologous jets, and remote brightenings for understanding the dynamics of 3D magnetic restructuring.
机译:色球中的太阳耀斑辐射通常在磁极性反转线(PIL)的两侧以细长带的形式出现,这被认为是典型的磁重连构造的证据。然而,尽管在涉及在三维(3D)冠状零点处重新连接的扇形-脊柱磁拓扑中可以预期到,但具有圆形带状光斑的报道很少。我们使用从大熊太阳能天文台最近数字化的胶片中获得的高分辨率和高节奏的Hα蓝翼观测资料,提出了五个带有相关波动的圆形带状耀斑。在所有情况下,相反的极性围绕着一个中心寄生磁场,形成了由细丝材料描绘的圆形PIL。因此,中心的火炬核被圆形的火炬带包围。 1991年3月17日和18日的四个同源射流相关的耀斑引起了人们的极大兴趣,因为(1)环形色带依次变亮,并伴有空间上的波动,而不是同时发亮;(2)中央耀斑显示出有趣的“往返”运动并变长,并且(3)远程增亮发生在与中央寄生场具有相同磁极性的区域,并且与火炬发射的单独相位同时发生。在1991年2月25日发生的另一个耀斑中,圆形耀斑的发射和浪涌活动相继发生,并且该事件可能与圆形PIL上的磁通量抵消有关。我们讨论了结合圆形耀斑带,同源射流和远程增亮的这些观测结果的含义,以了解3D磁重组的动力学。

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