On the importance of the nonequilibrium ionization of Si IV and O IV and the line-of-sight in solar surges
arXiv:1803.10251 · doi:10.3847/1538-4357/aab9b9
Abstract
Surges are ubiquitous cool ejections in the solar atmosphere that often appear associated with transient phenomena like UV bursts or coronal jets. Recent observations from the Interface Region Imaging Spectrograph (IRIS) show that surges, although traditionally related to chromospheric lines, can exhibit enhanced emission in Si IV with brighter spectral profiles than for the average transition region (TR). In this paper, we explain why surges are natural sites to show enhanced emissivity in TR lines. We performed 2.5D radiative-MHD numerical experiments using the Bifrost code including the nonequilibrium ionization of silicon and oxygen. A surge is obtained as a by-product of magnetic flux emergence; the TR enveloping the emerged domain is strongly affected by nonequilibrium effects: assuming statistical equilibrium would produce an absence of Si IV and O IV ions in most of the region. Studying the properties of the surge plasma emitting in the Si IV 1402.77 Å and O IV 1401.16 Å lines, we find that a) the timescales for the optically-thin losses and heat conduction are very short, leading to departures from statistical equilibrium, and b) the surge emits in Si IV more and has an emissivity ratio of Si IV to O IV larger than a standard TR. Using synthetic spectra, we conclude the importance of line-of-sight effects: given the involved geometry of the surge, the line-of-sight can cut the emitting layer at small angles and/or cross it multiple times, causing prominent, spatially intermittent brightenings both in Si IV and O IV.
18 pages, 11 figures (accepted in the Astrophysical Journal, ApJ)
References in corpus (15)
- Dynamic Fibrils are driven by Magnetoacoustic Shocks
- Non-equilibrium hydrogen ionization in 2D simulations of the solar atmosphere
- Twisted flux tube emergence from the convection zone to the corona
- Flows and Non-thermal Velocities in Solar Active Regions Observed with the Extreme-ultraviolet Imaging Spectrometer on Hinode: A Tracer of Active Region Sources of Heliospheric Magnetic Fields?
- Bombs and flares at the surface and lower atmosphere of the Sun
- Intermittent reconnection and plasmoids in UV bursts in the low solar atmosphere
- Why Is Non-thermal Line Broadening of Spectral Lines in The Lower Transition Region of the Sun Independent of Spatial Resolution?
- Non-Equilibrium Processes in the Solar Corona, Transition Region, Flares, and Solar Wind \textit{(Invited Review)}
- Surges and Si IV bursts in the solar atmosphere. Understanding IRIS and SST observations through RMHD experiments
- Density diagnostics derived from the OIV and SIV intercombination lines observed by IRIS
- Observations and numerical models of solar coronal heating associated with spicules
- Transition Region and Chromospheric Signatures of Impulsive Heating Events. II. Modeling
- The magnetic structure of surges in small-scale emerging flux regions
- Microjets in the penumbra of a sunspot
- Synthetic IRIS spectra of the solar transition region: Effect of high-energy tails
Cited by in corpus (20)
- Decoding the Pre-Eruptive Magnetic Field Configurations of Coronal Mass Ejections
- Ellerman bombs and UV bursts: reconnection at different atmospheric layers
- A case-study of multi-temperature coronal jets for emerging flux MHD models
- A Cancellation Nanoflare Model for Solar Chromospheric and Coronal Heating II. 2D Theory and Simulations
- Nonequilibrium ionization and ambipolar diffusion in solar magnetic flux emergence processes
- Ambipolar diffusion in the Bifrost code
- A 2D Model for Coronal Bright Points: Association with Spicules, UV bursts, Surges and EUV Coronal Jets
- IRIS observations of magnetic interactions in the solar atmosphere between pre-existing and emerging magnetic fields. II. UV emission properties
- Multi thermal atmosphere of a mini solar flare during magnetic reconnection observed with IRIS
- The role of small-scale surface motions in the transfer of twist to a solar jet from a remote stable flux rope
- Signatures of magnetic reconnection at the footpoints of fan shape jets on a light bridge driven by photospheric convective motions
- Solar surges related to UV bursts: Characterization through k-means, inversions and density diagnostics
- Origin of Quasi-Periodic Pulsation at the Base of Kink Unstable Jet
- High-resolution spectroscopy of a surge in an emerging flux region
- Thin coronal jets and plasmoid-mediated reconnection: Insights from Solar Orbiter observations and Bifrost simulations
- Non-Equilibrium Spectrum Formation Affecting Solar Irradiance
- Extreme-ultraviolet (EUV) observables of simulated plasmoid-mediated reconnection in the solar corona
- Infrared diagnostics of the solar magnetic field with Mg I 12 m lines: forward-model results
- A new view of the solar interface region from the Interface Region Imaging Spectrograph (IRIS)
- Observations of the formation of a proto-spot in a pre-existing field environment