首页> 外文期刊>The Astrophysical journal >INTERPLAY OF THREE KINDS OF MOTION IN THE DISK COUNTERPART OF TYPE II SPICULES: UPFLOW, TRANSVERSAL, AND TORSIONAL MOTIONS
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INTERPLAY OF THREE KINDS OF MOTION IN THE DISK COUNTERPART OF TYPE II SPICULES: UPFLOW, TRANSVERSAL, AND TORSIONAL MOTIONS

机译:II型针的磁盘柜台中三种运动的相互作用:流量,横向和扭转运动

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Recently, it was shown that the complex dynamical behavior of spicules has to be interpreted as the result of simultaneous action of three kinds of motion: (1) field aligned flows, (2) swaying motions, and (3) torsional motions. We use high-quality observations from the CRisp Imaging SpectroPolarimeter at the Swedish 1-m Solar Telescope to investigate signs of these different kinetic modes in spicules on the disk. Earlier, rapid blue-shifted excursions (RBEs), short-lived absorption features in the blue wing of chromospheric spectral lines, were identified as the disk counterpart of type?II spicules. Here we report the existence of similar absorption features in the red wing of the Ca II 8542 and Hα lines: rapid redshifted excursions (RREs). RREs are found over the whole solar disk and are located in the same regions as RBEs: in the vicinity of magnetic field concentrations. RREs have similar characteristics as RBEs: they have similar lengths, widths, lifetimes, and average Doppler velocity. The striking similarity of RREs to RBEs implies that RREs are a manifestation of the same physical phenomenon and that spicules harbor motions that can result in a net redshift when observed on-disk. We find that RREs are less abundant than RBEs: the RRE/RBE detection count ratio is about 0.52 at disk center and 0.74 near the limb. We interpret the higher number of RBEs and the decreased imbalance toward the limb as an indication that field-aligned upflows have a significant contribution to the net Dopplershift of the structure. Most RREs and RBEs are observed in isolation, but we find many examples of parallel and touching RRE/RBE pairs which appear to be part of the same spicule. We interpret the existence of these RRE/RBE pairs and the observation that many RREs and RBEs have varying Dopplershift along their width as signs that torsional motion is an important characteristic of spicules. The fact that most RBEs and RREs are observed in isolation agrees with the idea that transversal swaying motion is another important kinetic mode. We find examples of transitions from RRE to RBE and vice versa. These transitions sometimes appear to propagate along the structure with speeds between 18 and 108?km?s–1 and can be interpreted as the sign of a transverse (Alfvénic) wave.
机译:最近,已经表明,必须将针的复杂动力学行为解释为三种运动的同时作用的结果:(1)场定向流动,(2)摇摆运动和(3)扭转运动。我们使用来自瑞典1-m太阳望远镜的CRisp成像分光光度计的高质量观​​测数据来研究磁盘针状体中这些不同动力学模式的迹象。早期,快速的蓝移偏移(RBE),在色球光谱线的蓝翼中的短暂吸收特征被确定为II型针状体的盘状对应物。在这里,我们报告在Ca II 8542和Hα谱系的红翼中存在相似的吸收特征:快速红移偏移(RRE)。 RRE位于整个太阳能磁盘上,并且与RBE位于相同的区域:在磁场集中附近。 RRE具有与RBE相似的特性:它们具有相似的长度,宽度,寿命和平均多普勒速度。 RRE与RBE的惊人相似之处意味着RRE是相同物理现象的体现,并且针状运动会在磁盘上观察到时产生净红移。我们发现RRE不如RBE丰富:RRE / RBE检测计数比在磁盘中心大约为0.52,在肢体附近大约为0.74。我们将RBE的数量增加和对肢体的不平衡性降低的现象解释为,表明场定向上流对结构的净多普勒频移有重要贡献。大多数RRE和RBE是孤立观察到的,但是我们发现了许多平行的和接触的RRE / RBE对的例子,它们似乎是同一针刺的一部分。我们解释了这些RRE / RBE对的存在,并观察到许多RRE和RBE沿其宽度沿多普勒频移变化,这表明扭转运动是针状骨的重要特征。大多数RBE和RRE都被单独观察到的事实与横向摇摆运动是另一种重要的动力学模式相一致。我们找到了从RRE到RBE以及反之亦然的转换示例。这些过渡有时似乎以18至108?km?s–1的速度沿结构传播,并且可以解释为横向(Alfvénic)波的信号。

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