Helical motions of fine-structure prominence threads observed by Hinode and IRIS
arXiv:1608.00123 · doi:10.3847/0004-637X/831/2/126
Abstract
Fine-structure dynamics in solar prominences holds critical clues to understanding their physical nature of significant space-weather implications. We report evidence of rotational motions of horizontal helical threads in two active-region prominences observed by the \emph{Hinode} and/or \emph{IRIS} satellites at high resolution. In the first event, we found transverse motions of brightening threads at speeds up to 55~km~s seen in the plane of the sky. Such motions appeared as sinusoidal space--time trajectories with a typical period of 390~s, which is consistent with plane-of-sky projections of rotational motions. Phase delays at different locations suggest propagation of twists along the threads at phase speeds of 90--270~km~s. At least 15 episodes of such motions occurred in two days, none associated with any eruption. For these episodes, the plane-of-sky speed is linearly correlated with the vertical travel distance, suggestive of a constant angular speed. In the second event, we found Doppler velocities of 30--40~km~s in opposite directions in the top and bottom portions of the prominence, comparable to the plane-of-sky speed. The moving threads have about twice broader line widths than stationary threads. These observations, when taken together, provide strong evidence for rotations of helical prominence threads, which were likely driven by unwinding twists triggered by magnetic reconnection between twisted prominence magnetic fields and ambient coronal fields.
25 pages, 11 figures, accepted for publication in ApJ
References in corpus (4)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Transverse oscillations of flowing prominence threads observed with Hinode
- Open questions on prominences from coordinated observations by IRIS, Hinode, SDO/AIA, THEMIS, and the Meudon/MSDP
- First High-resolution Spectroscopic Observations of an Erupting Prominence Within a Coronal Mass Ejection by the Interface Region Imaging Spectrograph (IRIS)
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- Fast Magnetosonic Waves and Flows in a Solar Prominence Foot: Observations and Modeling
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