A rising cool column as signature for helical flux emergence and formation of prominence and coronal cavity
arXiv:1006.4633 · doi:10.1088/0004-637X/719/1/583
Abstract
Continuous observations were performed of a quiescent prominence with the Solar Optical Telescope (SOT) on board the /emph{Hinode} satellite on 2006 December 23--24. A peculiar slowly-rising column of K plasma develops from the lower atmosphere during the observations. The apparent ascent speed of the column is 2 km s, while the fine structures of the column exhibit much faster motion of up to 20 km s. The column eventually becomes a faint low-lying prominence. Associated with the appearance of the column, an overlying coronal cavity seen in the X-ray and EUV moves upward at 5 km s. We discuss the relationship between these episodes, and suggest that they are due to the emergence of a helical flux rope that undergoes reconnection with lower coronal fields, possibly carrying material into the coronal cavity. Under the assumption of the emerging flux scenario, the lower velocity of 2 km s and the higher one of 20 km s in the column are attributed to the rising motion of the emerging flux and to the outflow driven by magnetic reconnection between the emerging flux and the pre-existing coronal field, respectively. The present paper gives a coherent explanation of the enigmatic phenomenon of the rising column with the emergence of the helical rope, and its effect on the corona. We discuss the implications that the emergence of such a helical rope has on the dynamo process in the convection zone.
Accepted for publication in ApJ. 19 pages, 7 figures. 3 mpeg movies not included in astro-ph
References in corpus (9)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Observing the Roots of Solar Coronal Heating - in the Chromosphere
- Emergence of Small-Scale Magnetic Loops in the Quiet Sun Internetwork
- Emergence of a Helical Flux Rope Under an Active Region Prominence
- Large amplitude oscillation of a polar crown filament in the pre-eruption phase
- Transient horizontal magnetic fields in solar plage regions
- Comparison of transient horizontal magnetic fields in a plage region and in the quiet Sun
- Large-Amplitude Oscillation of an Erupting Filament as Seen in EUV, H-alpha and Microwave Observations
- Triggering Mechanism for the Filament Eruption on 2005 September 13 in Active Region NOAA 10808
Cited by in corpus (11)
- A solar tornado observed by AIA/SDO: Rotational flow and evolution of magnetic helicity in a prominence and cavity
- Solar Magnetized "Tornadoes": Relation to Filaments
- Probing the Physics of the Solar Atmosphere with the Multi-slit Solar Explorer (MUSE): II. Flares and Eruptions
- Reconnection-Condensation Model for Solar Prominence Formation
- Quiescent prominence dynamics observed with the Hinode Solar Optical Telescope . II. Prominence Bubble Boundary Layer Characteristics and the Onset of a Coupled Kelvin-Helmholtz Rayleigh-Taylor Instability
- The Hydromagnetic Interior of a Solar Quiescent Prominence. I. Coupling between Force-balance and Steady Energy-transport
- Multi-Wavelength Observations of a Flux Rope Failed in the Eruption and Associated M-Class Flare from NOAA AR 11045
- Fine-scale structures and material flows of quiescent filaments observed by New Vacuum Solar Telescope
- Impact of Dynamic State on the Mass Condensation Rate of Solar Prominences
- Spectro-imagery of an active tornado-like prominence: formation and evolution
- Response of the solar atmosphere to flux emergence: With emergence-driven prominence formation