Papers
Topics
Authors
Recent
Search
2000 character limit reached

Chirality and Magnetic Configurations of Solar Filaments

Published 4 Dec 2016 in astro-ph.SR | (1612.01054v1)

Abstract: It has been revealed that the magnetic topology in the solar atmosphere displays hemispheric preference, i.e., negative/positive helicity in the northern/southern hemisphere, respectively. However, the strength of the hemispheric rule and its cyclic variation are controversial. In this paper, we apply a new method based on filament drainage to 571 erupting filaments from 2010 May to 2015 December in order to determine the filament chirality and its hemispheric preference. It is found that 91.6%91.6\% of our sample of erupting filaments follow the hemispheric rule of helicity sign. It is found that the strength of the hemispheric preference of the quiescent filaments decreases slightly from ∼\sim97\%intherisingphaseto in the rising phase to \sim85%85\% in the declining phase of solar cycle 24, whereas the strength of the intermediate filaments keeps a high value around 96±4%96\pm4\% all the time. Only the active-region filaments show significant variations. Their strength of the hemispheric rule rises from ∼\sim63\%to to \sim95%95\% in the rising phase, and keeps a high value 82±5%82\pm5\% during the declining phase. Furthermore, during a half-year period around the solar maximum, their hemispheric preference totally vanishes. Besides, we also diagnose the magnetic configurations of the filaments based on our indirect method, and found that in our sample of erupting events, 89%89\% are inverse-polarity filaments with a flux rope magnetic configuration, whereas 11%11\% are normal-polarity filaments with a sheared arcade configuration.

Authors (4)
Citations (117)

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Open Problems

We haven't generated a list of open problems mentioned in this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.