论文标题
宏孔及其与较低大气中的磁重新连接的联系
Macrospicules and Their Connection to Magnetic Reconnection in the Lower Atmosphere
论文作者
论文摘要
太阳宏孔是横梁状的横梁状等离子体弹出,在Spicules和Coronal Jet之间大小,可以阐明不同尺度下等离子体喷射活性之间的潜在连接。通过来自{\ em新真空太阳能望远镜}和太阳动态天文台的高分辨率观测,我们研究了五组复发性区域宏观菌物的起源。在每个宏观启动之前,我们在其底部检测到一个紧凑的明亮贴片(BP),在该底座上,新出现的偶极式触点,并通过现有的环境场取消。 BPS之一的{\ em界面区域成像光谱仪}的光谱诊断揭示了在下部大气中重新连接的特征。这些BPS的多波长成像表明,它们主要发生在通量出现的上升阶段,并从下色球慢慢上升到上下部。一旦BP出现并从AIA 304 A图像衰减后,出现了显着的宏孔子并消失。我们建议在共同的重新连接过程中形成这些宏孔和相关的BPS,其中新兴偶极子和环境场之间的重新连接高度增加导致观察到的从BPS到宏观细节的变化。有趣的是,大多数宏植物都显示出与较大规模的冠状喷气机和/或较小规模的Spicules相似的特征,即旋转运动,喷发前的微型纤维和BP的存在以及磁通量的出现和取消。我们得出的结论是,宏植物的形成机理应与Spicules和Coronal Jets相同,即不同尺度上的太阳喷射现象与磁重新连接相同。
Solar macrospicules are beam-like cool plasma ejections of size in-between spicules and coronal jets, which can elucidate potential connections between plasma jetting activity at different scales. With high-resolution observations from the {\em New Vacuum Solar Telescope} and Solar Dynamic Observatory, we investigate the origin of five groups of recurrent active-region macrospicules. Before the launch of each macrospicule, we detect a compact bright patch (BP) at its base where a newly emerging dipole contacts and cancel with the pre-existing ambient field. The spectral diagnosis from the {\em Interface Region Imaging Spectrograph} at one of BPs reveals signatures of reconnection at the lower atmosphere. Multiwavelength imaging of these BPs show that they mainly occur at the rising phase of the flux emergence and slowly ascend from the lower to the upper chromosphere. Remarkable macrospicules occur and fade out once the BPs appear and decay from the AIA 304 A images, respectively. We suggest that these macrospicules and related BPs form in a common reconnection process, in which the increasing reconnection height between the emerging dipole and the ambient field results in the observed variations from BPs to macrospicules. Interestingly, most macrospicules show similar characteristics to larger-scale coronal jets and/or smaller-scale spicules, i.e., the rotating motions, the presence of minifilaments and BPs before the eruptions, and magnetic flux emergence and cancellation. We conclude that the formation mechanism of macrospicules should be the same as spicules and coronal jets, i.e., solar jetting phenomena at different scales share the same physical mechanism in association with magnetic reconnection.