论文标题

反埃面流动流的时间演变

Temporal Evolution of the Inverse Evershed Flow

论文作者

Beck, C., Choudhary, D. P.

论文摘要

反埃弗斯流动(IEF)是在太阳能球体中的材料中流入黑子的半子的材料,沿着黑暗,细长的超脑纤维从护城河外边缘延伸到黑子。 IEF通道在半身部显示亮度,超音速IEF降落到Photosphere上,引起了局部加热的冲击战线。我们在854nm时使用了Caiiir的色圈光谱线的光谱光谱线的1小时时间序列,并在DST与IBIS一起进行了656nm的H $α$,以研究IEF通道的时间进化。从1083 \ nm和HMI的FIR的观测值获得了有关光电磁场的互补信息。我们发现,单个的IEF通道是长寿(10-60分钟),并且在其一生中的位置和流速度的变化很小。 IEF频道的启动和终止需要几分钟。约10公里/s的视线速度的IEF通道对瞬态或振荡现象没有持久影响,最大速度幅度仅沿它们运行的​​最大速度幅度约为1km/s。我们无法检测到IEF通道的位置和演变与阴茎光谱中的局部磁场特性的任何明确相关性,或者在黑子护城河中移动磁性特征。我们的结果支持IEF的图片,作为沿拱形环的野外对准虹吸管流。从我们的数据中,我们无法确定它们的演化是由护城河外部端的事件还是在阴前的内端控制。

The inverse Evershed flow (IEF) is an inflow of material into the penumbra of sunspots in the solar chromosphere that occurs along dark, elongated superpenumbral fibrils extending from about the outer edge of the moat cell to the sunspot. The IEF channels exhibit brightenings in the penumbra, where the supersonic IEF descends to the photosphere causing shock fronts with localized heating. We used an 1-hr time-series of spectroscopic observations of the chromospheric spectral lines of CaIIIR at 854nm and H$α$ at 656nm taken with IBIS at the DST to investigate the temporal evolution of IEF channels. Complementary information on the photospheric magnetic field was obtained from observations with FIRS at 1083\nm and HMI. We find that individual IEF channels are long-lived (10-60min) and only show minor changes in position and flow speed during their life time. Initiation and termination of IEF channels takes several minutes. The IEF channels with line-of-sight velocities of about 10km/s show no lasting impact from transient or oscillatory phenomena with maximal velocity amplitudes of only about 1km/s that run along them. We could not detect any clear correlation of the location and evolution of IEF channels to local magnetic field properties in the photosphere in the penumbra or moving magnetic features in the sunspot moat. Our results support a picture of the IEF as a field-aligned siphon flow along arched loops. From our data we cannot determine if their evolution is controlled by events at the outer end in the moat or at the inner end in the penumbra.

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