Non-equilibrium hydrogen ionization in 2D simulations of the solar atmosphere
arXiv:0709.3751 · doi:10.1051/0004-6361:20078161
Abstract
The ionization of hydrogen in the solar chromosphere and transition region does not obey LTE or instantaneous statistical equilibrium because the timescale is long compared with important hydrodynamical timescales, especially of magneto-acoustic shocks. We implement an algorithm to compute non-equilibrium hydrogen ionization and its coupling into the MHD equations within an existing radiation MHD code, and perform a two-dimensional simulation of the solar atmosphere from the convection zone to the corona. Analysis of the simulation results and comparison to a companion simulation assuming LTE shows that: a) Non-equilibrium computation delivers much smaller variations of the chromospheric hydrogen ionization than for LTE. The ionization is smaller within shocks but subsequently remains high in the cool intershock phases. As a result, the chromospheric temperature variations are much larger than for LTE because in non-equilibrium, hydrogen ionization is a less effective internal energy buffer. The actual shock temperatures are therefore higher and the intershock temperatures lower. b) The chromospheric populations of the hydrogen n = 2 level, which governs the opacity of Halpha, are coupled to the ion populations. They are set by the high temperature in shocks and subsequently remain high in the cool intershock phases. c) The temperature structure and the hydrogen level populations differ much between the chromosphere above photospheric magnetic elements and above quiet internetwork. d) The hydrogen n = 2 population and column density are persistently high in dynamic fibrils, suggesting that these obtain their visibility from being optically thick in Halpha also at low temperature.
10 pages, 4 figures
References in corpus (3)
Cited by in corpus (59)
- Fluid description of multi-component solar partially ionized plasma
- Coupling from the photosphere to the chromosphere and the corona
- Non-LTE inversions of the Mg II h&k and UV triplet lines
- Three-dimensional Magnetohydrodynamic Simulation of the Formation of Solar Chromospheric Jets with Twisted Magnetic Field Lines
- Probing the physics of the solar atmosphere with the Multi-slit Solar Explorer (MUSE): I. Coronal Heating
- Two-dimensional Radiative Magnetohydrodynamic Simulations of Partial Ionization in the Chromosphere. II. Dynamics and Energetics of the Low Solar Atmosphere
- Rayleigh-Taylor instability in prominences from numerical simulations including partial ionization effects
- Non-Equilibrium Processes in the Solar Corona, Transition Region, Flares, and Solar Wind \textit{(Invited Review)}
- Millimeter radiation from a 3D model of the solar atmosphere I. Diagnosing chromospheric thermal structure
- Surges and Si IV bursts in the solar atmosphere. Understanding IRIS and SST observations through RMHD experiments
- Ion-neutral interactions and non-equilibrium ionization in the solar chromosphere
- Chromospheric Extension of the MURaM Code
- What causes the high apparent speeds in chromospheric and transition region spicules on the Sun?
- Three-dimensional radiative transfer simulations of the scattering polarization of the hydrogen Ly line in a MHD model of the chromosphere-corona transition region
- Dissecting bombs and bursts: non-LTE inversions of low-atmosphere reconnection in SST and IRIS observations
- Nonequilibrium ionization and ambipolar diffusion in solar magnetic flux emergence processes
- Asymmetric Magnetic Reconnection in Weakly Ionized Chromospheric Plasmas
- The cause of spatial structure in solar He I 1083 nm multiplet images
- A First Comparison of Millimeter Continuum and Mg II Ultraviolet Line Emission from the Solar Chromosphere
- H-alpha features with hot onsets III. Fibrils in Lyman-alpha and with ALMA
- Formation of the helium EUV resonance lines
- Ambipolar diffusion in the Bifrost code
- DOT Tomography of the Solar Atmosphere VII. Chromospheric Response to Acoustic Events
- Weak damping of propagating MHD kink waves in the quiescent corona
- Two-fluid Modeling of Acoustic Wave Propagation in Gravitationally Stratified Isothermal Media
- The detection of upwardly propagating waves channelling energy from the chromosphere to the low corona
- Spatio-temporal analysis of chromospheric heating in a plage region
- On the origin of the magnetic energy in the quiet solar chromosphere
- Numerical simulations and observations of Mg II in the solar chromosphere
- The impact of multi-fluid effects in the solar chromosphere on the ponderomotive force under LTE and NEQ ionization conditions
- Structures in the outer solar atmosphere
- Coalescence Instability in Chromospheric Partially Ionised Plasmas
- Dynamics of internetwork chromospheric fibrils: Basic properties and MHD kink waves
- 1.5D NLTE spectral synthesis of a 3D filament/prominence simulation
- Mg ii h&k spectra of an enhanced network region simulated with the MURaM-ChE code. Results using 1.5D synthesis
- Spectral variations within solar flare ribbons
- Chromospheric Heating from Local Magnetic Growth and Ambipolar Diffusion Under Non-Equilibrium Conditions
- Small-scale loops heated to transition region temperatures and their chromospheric signatures in the simulated solar atmosphere
- Formation of H in the solar atmosphere
- Fast magnetic wave could heat the solar low-beta chromosphere
- Structure and dynamics of the internetwork solar chromosphere: results of a small-scale dynamo simulation
- Spectroscopic and interferometric signatures of magnetospheric accretion in young stars
- Doppler shifts of spectral lines formed in the solar transition region and corona
- Flare heating of the chromosphere: Observations of flare continuum from GREGOR and IRIS
- Multi-fluid Simulation of Solar Chromospheric Turbulence and Heating Due to the Thermal Farley-Buneman Instability
- Chromosphere of the quiet sun -- I. Shock and current-sheet dynamics and heating
- Temperature diagnostics of chromospheric fibrils
- Ambipolar diffusion: Self-similar solutions and MHD code testing. Cylindrical symmetry
- Ca ii 854.2 nm in an enhanced network region simulated with MURaM-ChE
- Convergence study of ambipolar diffusion in realistic simulations of magneto-convection
- Statistical properties of spicules in MURaM-ChE
- Comparison of chromospheric diagnostics in a 3D model atmosphere: H linewidth and mm continua
- A new view of the solar interface region from the Interface Region Imaging Spectrograph (IRIS)
- Non-equilibrium Equation of State in stellar atmospheres
- Jacobian-Free Newton-Krylov method for multilevel NLTE radiative transfer problems
- MHD waves in the partially ionized plasma: from single to multi-fluid approach
- A single frequency approach to nonequilibrium modeling of the chromosphere
- Can small-scale magnetic fields be the major cause for the near-surface effect of the solar p-mode frequencies?
- Modeling brightness temperature of sunspots using ALMA single-dish observations