Spectroscopic Diagnostics of Solar Magnetic Flux Ropes Using Iron Forbidden Line
arXiv:1605.00195 · doi:10.3847/2041-8205/823/1/L4
Abstract
In this Letter, we present Interface Region Imaging Spectrograph Fe XXI 1354.08 A forbidden line emission of two magnetic flux ropes (MFRs) that caused two fast coronal mass ejections with velocities of 1000 km s and strong flares (X1.6 and M6.5) on 2014 September 10 and 2015 June 22, respectively. The EUV images at the 131 A and 94 A passbands provided by the Atmospheric Imaging Assembly on board Solar Dynamics Observatory reveal that both MFRs initially appear as suspended hot channel-like structures. Interestingly, part of the MFRs is also visible in the Fe XXI 1354.08 forbidden line, even prior to the eruption, e.g., for the SOL2014-09-10 event. However, the line emission is very weak and that only appears at a few locations but not the whole structure of the MFRs. This implies that the MFRs could be comprised of different threads with different temperatures and densities, based on the fact that the formation of the Fe XXI forbidden line requires a critical temperature (11.5 MK) and density. Moreover, the line shows a non-thermal broadening and a blueshift in the early phase. It suggests that magnetic reconnection at that time has initiated; it not only heats the MFR and, at the same time, produces a non-thermal broadening of the Fe XXI line but also produces the poloidal flux, leading to the ascending of the MFRs.
6 pages, 4 figures, accepted for publication in ApJ Letters
References in corpus (18)
- Torus instability
- Ideal kink instability of a magnetic loop equilibrium
- Observation of An Evolving Magnetic Flux Rope Prior To and During A Solar Eruption
- Sigmoid-to-Flux-Rope Transition Leading to A Loop-Like Coronal Mass Ejection
- Temporal evolution of multiple evaporating ribbon sources in a solar flare
- Formation of a Double-decker Magnetic Flux Rope in the Sigmoidal Solar Active Region 11520
- Imaging and spectroscopic observations of magnetic reconnection and chromospheric evaporation in a solar flare
- Quasi-periodic Slipping Magnetic Reconnection During an X-class Solar Flare Observed by the Solar Dynamics Observatory and Interface Region Imaging Spectrograph
- The 2014 March 29 X-flare: sub-arcsecond resolution observations of Fe XXI 1354.1
- On the Relationship Between a Hot-channel-like Solar Magnetic Flux Rope and its embedded Prominence
- Plasma and Magnetic Field Characteristics of Solar Coronal Mass Ejections in Relation to Geomagnetic Storm Intensity and Variability
- Chromospheric Evaporation in an X1.0 Flare on 2014 March 29 Observed with IRIS and EIS
- Imaging and Spectroscopic Diagnostics on the Formation of Two Magnetic Flux Ropes Revealed by SDO/AIA and IRIS
- Extreme Ultraviolet Imaging of Three-dimensional Magnetic Reconnection in a Solar Eruption
- Direct observations of magnetic flux rope formation during a solar coronal mass ejection
- Observational Evidences of Electron-driven Evaporation in two Solar Flares
- Direct Evidence of an Eruptive, Filament-Hosting Magnetic Flux Rope Leading to a Fast Solar Coronal Mass Ejection
- The spectroscopic imprint of the pre-eruptive configuration resulting into two major coronal mass ejections
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