High-resolution spectroscopy of a surge in an emerging flux region

被引:8
|
作者
Verma, M. [1 ]
Denker, C. [1 ]
Diercke, A. [1 ,2 ]
Kuckein, C. [1 ]
Balthasar, H. [1 ]
Dineva, E. [1 ,2 ]
Kontogiannis, I. [1 ]
Pal, P. S. [1 ,3 ]
Sobotka, M. [4 ]
机构
[1] Leibniz Inst Astrophys Potsdam AIP, Sternwarte 16, D-14482 Potsdam, Germany
[2] Univ Potsdam, Inst Phys & Astron, Karl Liebknecht Str 24-25, D-14476 Potsdam, Germany
[3] Univ Delhi, Bhaskaracharya Coll Appl Sci, Sect 2,Phase 1, New Delhi 110075, India
[4] Czech Acad Sci, Astron Inst, Fricova 298, Ondejov 25165, Czech Republic
基金
欧盟地平线“2020”;
关键词
Sun: activity; Sun: chromosphere; Sun: photosphere; line: profiles; methods: observational; H-ALPHA SURGES; MOVING MAGNETIC FEATURES; ACTIVE-REGION; SOLAR ATMOSPHERE; DOT TOMOGRAPHY; SMALL-SCALE; DYNAMICS; EVENTS; RECONNECTION; EMERGENCE;
D O I
10.1051/0004-6361/201936762
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Aims. The regular pattern of quiet-Sun magnetic fields was disturbed by newly emerging magnetic flux, which led a day later to two homologous surges after renewed flux emergence, affecting all atmospheric layers. Hence, simultaneous observations in different atmospheric heights are needed to understand the interaction of rising flux tubes with the surrounding plasma, in particular by exploiting the important diagnostic capabilities provided by the strong chromospheric H alpha line regarding morphology and energetic processes in active regions.Methods. A newly emerged active region NOAA 12722 was observed with the Vacuum Tower Telescope (VTT) at Observatorio del Teide, Tenerife, Spain, on 11 September 2018. High spectral resolution observations using the echelle spectrograph in the chromospheric H alpha lambda 6562.8 angstrom line were obtained in the early growth phase. Noise-stripped H alpha line profiles yield maps of line-core and bisector velocities, which were contrasted with velocities inferred from Cloud Model inversions. A high-resolution imaging system recorded simultaneously broad- and narrowband H alpha context images. The Solar Dynamics Observatory provided additional continuum images, line-of-sight (LOS) magnetograms, and UV and extreme UV (EUV) images, which link the different solar atmospheric layers.Results. The active region started as a bipolar region with continuous flux emergence when a new flux system emerged in the leading part during the VTT observations, resulting in two homologous surges. While flux cancellation at the base of the surges provided the energy for ejecting the cool plasma, strong proper motions of the leading pores changed the magnetic field topology making the region susceptible to surging. Despite the surge activity in the leading part, an arch filament system in the trailing part of the old flux remained stable. Thus, stable and violently expelled mass-loaded ascending magnetic structures can coexist in close proximity. Investigating the height dependence of LOS velocities revealed the existence of neighboring strong up- and downflows. However, downflows occur with a time lag. The opacity of the ejected cool plasma decreases with distance from the base of the surge, while the speed of the ejecta increases. The location at which the surge becomes invisible in H alpha corresponds to the interface where the surge brightens in HeII lambda 304 angstrom. Broad-shouldered and dual-lobed H alpha profiles suggests accelerated or decelerated and highly structured LOS plasma flows. Significantly broadened H alpha profiles imply significant heating at the base of the surges, which is also supported by bright kernels in UV and EUV images uncovered by swaying motions of dark fibrils at the base of the surges.Conclusions. The interaction of newly emerging flux with pre-existing flux concentrations of a young, diffuse active region provided suitable conditions for two homologous surges. High-resolution spectroscopy revealed broadened and dual-lobed H alpha profiles tracing accelerated or decelerated flows of cool plasma along the multi-threaded structure of the surge.
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页数:12
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