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首页> 外文期刊>Space Science Reviews >Solar fine-scale structures. I. Spicules and other small-scale, jet-like events at the chromospheric level: Observations and physical parameters
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Solar fine-scale structures. I. Spicules and other small-scale, jet-like events at the chromospheric level: Observations and physical parameters

机译:太阳精细结构。 I.色球层的螺旋形和其他小规模喷射状事件:观测和物理参数

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Over the last two decades the uninterrupted, high resolution observations of the Sun, from the excellent range of telescopes aboard many spacecraft complemented with observations from sophisticated ground-based telescopes have opened up a new world producing significantly more complete information on the physical conditions of the solar atmosphere than before. The interface between the lower solar atmosphere where energy is generated by subsurface convection and the corona comprises the chromosphere, which is dominated by jet-like, dynamic structures, called mottles when found in quiet regions, fibrils when found in active regions and spicules when observed at the solar limb. Recently, space observations with Hinode have led to the suggestion that there should exist two different types of spicules called Type I and Type II which have different properties. Ground-based observations in the Ca∈ii H and K filtergrams reveal the existence of long, thin emission features called straws in observations close to the limb, and a class of short-lived events called rapid blue-shifted excursions characterized by large Doppler shifts that appear only in the blue wing of the Ca∈ii infrared line. It has been suggested that the key to understanding how the solar plasma is accelerated and heated may well be found in the studies of these jet-like, dynamic events. However, while these structures are observed and studied for more than 130 years in the visible, but also in the UV and EUV emission lines and continua, there are still many questions to be answered. Thus, despite their importance and a multitude of observations performed and theoretical models proposed, questions regarding their origin, how they are formed, their physical parameters, their association with the underlying photospheric magnetic field, how they appear in the different spectral lines, and the interrelationship between structures observed in quiet and active regions on the disk and at the limb, as well as their role in global processes has not yet received definitive answers. In addition, how they affect the coronal heating and solar wind need to be further explored. In this review we present observations and physical properties of small-scale jet-like chromospheric events observed in active and quiet regions, on the disk and at the limb and discuss their interrelationship.
机译:在过去的二十年中,许多航天器上出色的望远镜对太阳的不间断高分辨率观测,再加上先进的地面望远镜的观测,开辟了一个新世界,产生了关于地球物理条件的更为完整的信息。太阳大气比以前大。太阳下​​层大气(通过地下对流产生能量)与日冕之间的界面包括色球层,色球层由喷射状的动态结构控制,在安静区域发现时称为斑点,在活动区域​​发现时称为原纤维,观察到的则为针状在太阳肢。最近,用希诺德(Hinode)进行的太空观测结果提出了这样的建议,即应该存在两种性质不同的针头,分别称为I型和II型。 Ca∈iiH和K过滤图中的地面观测表明,在靠近肢体的观测中,存在着细长的放射特征,即稻草,还有一类短暂的事件,称为快速蓝移,其特征是多普勒频移大仅出现在Ca∈ii红外线的蓝色机翼中。已经提出,在研究这些类似喷射的动态事件时,很可能找到理解如何加速和加热太阳等离子体的关键。但是,尽管在可见光中以及在UV和EUV发射线以及连续区域中对这些结构进行了130多年的观察和研究,但仍有许多问题需要解答。因此,尽管它们的重要性和进行的大量观测和提出的理论模型,但仍存在以下问题:它们的起源,如何形成,它们的物理参数,它们与潜在的光球磁场的关联,它们如何出现在不同的光谱线中以及在椎间盘和肢体的安静和活动区域中观察到的结构之间的相互关系,以及它们在整体过程中的作用尚未得到明确的答案。此外,还需要进一步研究它们如何影响日冕加热和太阳风。在这篇综述中,我们介绍了在活动和安静区域,在磁盘上和在肢体处观察到的小规模喷射状色球事件的观测结果和物理性质,并讨论了它们之间的相互关系。

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