Non-thermal Velocity in the Transition Region of Active Regions and its Centre-to-Limb Variation
arXiv:2103.15081 · doi:10.3847/1538-4357/abf244
Abstract
We derive the non-thermal velocities (NTVs) in the transition region of an active region using the \ion{Si}{4}~1393.78~Å line observed by the Interface Region Imaging Spectrograph (IRIS) and compare them with the line-of-sight photospheric magnetic fields obtained by the Helioseismic and Magnetic Imager (HMI) onboard the Solar Dynamics Observatory (SDO). The active region consists of two strong field regions with opposite polarity, separated by a weak field corridor, that widened as the active region evolved. The means of the NTV distributions in strong-field regions (weak field corridors) range between 18{--}20 (16{--}18)~km~s, albeit the NTV maps show much larger range. In addition, we identify a narrow lane in the middle of the corridor with significantly reduced NTV. The NTVs do not show a strong center-to-limb variation, albeit somewhat larger values near the disk center. The NTVs are well correlated with redshifts as well as line intensities. The results obtained here and those presented in our companion paper on Doppler shifts suggest two populations of plasma in the active region emitting in \ion{Si}{4}. The first population exists in the strong field regions and extends partway into the weak field corridor between them. We attribute this plasma to spicules heated to 0.1 MK (often called type II spicules). They have a range of inclinations relative to vertical. The second population exists in the center of the corridor, is relatively faint, and has smaller velocities, likely horizontal. These results provide further insights into the heating of the transition region.
23 pages, 8 figures, accepted for publication in The Astrophysical Journal
References in corpus (4)
- Prevalence of Small-scale Jets from the Networks of the Solar Transition Region and Chromosphere
- Why Is Non-thermal Line Broadening of Spectral Lines in The Lower Transition Region of the Sun Independent of Spatial Resolution?
- Flows and Motions in Moss in the Core of a Flaring Active Region: Evidence for Steady Heating
- On Doppler shift and its Center-to-Limb Variation in Active Regions in the Transition Region
Cited by in corpus (4)
- On the formation of solar wind & switchbacks, and quiet Sun heating
- A Statistical Study of IRIS Observational Signatures of Nanoflares and Non-thermal Particles
- Center to limb variation of transition region Doppler shift in active regions
- On the Nature of Nonthermal Broadening of Spectral Lines Observed by IRIS