Multidimensional modeling of coronal rain dynamics
arXiv:1306.4759 · doi:10.1088/2041-8205/771/2/L29
Abstract
We present the first multidimensional, magnetohydrodynamic simulations which capture the initial formation and the long-term sustainment of the enigmatic coronal rain phenomenon. We demonstrate how thermal instability can induce a spectacular display of in-situ forming blob-like condensations which then start their intimate ballet on top of initially linear force-free arcades. Our magnetic arcades host chromospheric, transition region, and coronal plasma. Following coronal rain dynamics for over 80 minutes physical time, we collect enough statistics to quantify blob widths, lengths, velocity distributions, and other characteristics which directly match with modern observational knowledge. Our virtual coronal rain displays the deformation of blobs into -shaped like features, interactions of blobs due to mostly pressure-mediated levitations, and gives the first views on blobs which evaporate in situ, or get siphoned over the apex of the background arcade. Our simulations pave the way for systematic surveys of coronal rain showers in true multidimensional settings, to connect parametrized heating prescriptions with rain statistics, ultimately allowing to quantify the coronal heating input.
12 pages, 4 figures, accepted by ApJ Letters at 2013-05-14
References in corpus (3)
- Observing the fine structure of loops through high resolution spectroscopic observations of coronal rain with the CRISP instrument at the Swedish Solar Telescope
- Simulations of Prominence Formation in the Magnetized Solar Corona by Chromospheric Heating
- Continuous upflows and sporadic downflows observed in active regions
Cited by in corpus (48)
- MPI-AMRVAC 2.0 for Solar and Astrophysical Applications
- Solar science with the Atacama Large Millimeter/submillimeter Array - A new view of our Sun
- The multi-thermal and multi-stranded nature of coronal rain
- Critical Science Plan for the Daniel K. Inouye Solar Telescope (DKIST)
- Detection of supersonic downflows and associated heating events in the transition region above sunspots
- Dynamics of coronal rain and descending plasma blobs in solar prominences: II. partially ionized case
- On the occurrence of thermal non-equilibrium in coronal loops
- Coronal rain in magnetic arcades: Rebound shocks, Limit cycles, and Shear flows
- Long-Period Intensity Pulsations in Coronal Loops Explained by Thermal Non-Equilibrium Cycles
- Unresolved fine-scale structure in solar coronal loop-tops
- The Coronal Monsoon: Thermal Nonequilibrium Revealed by Periodic Coronal Rain
- The Dynamics of Funnel Prominences
- Dynamics of coronal rain and descending plasma blobs in solar prominences: I. Fully ionised case
- Vector magnetic field measurements along a cooled stereo-imaged coronal loop
- Coronal rain in magnetic bipolar weak fields
- The effects of numerical resolution, heating timescales and background heating on thermal non-equilibrium in coronal loops
- Observing the formation of flare-driven coronal rain
- Prominence formation by levitation-condensation at extreme resolutions
- Solar prominences: 'double, double ... boil and bubble'
- Thermal instabilities: Fragmentation and field misalignment of filament fine structure
- Coronal rain in randomly heated arcades
- Modelling of Reflective Propagating Slow-mode Wave in a Flaring Loop
- Simulating coronal condensation dynamics in 3D
- Transition region adaptive conduction (TRAC) in multidimensional magnetohydrodynamic simulations
- Multi-scale observations of thermal non-equilibrium cycles in coronal loops
- Mixed properties of slow magnetoacoustic and entropy waves in a plasma with heating/cooling misbalance
- An explanation of remarkable emission line profiles in post-flare coronal rain
- First High-resolution Spectroscopic Observations of an Erupting Prominence Within a Coronal Mass Ejection by the Interface Region Imaging Spectrograph (IRIS)
- Self-consistent 3D radiative MHD simulations of coronal rain formation and evolution
- The influence of flux rope heating models on solar prominence formation
- Formation and evolution of coronal rain observed by SDO/AIA on February 22, 2012
- Simulating AIA observations of a flux rope ejection
- Spatial and Temporal Analysis of Quiescent Coronal Rain over an Active Region
- When hot meets cold: post-flare coronal rain
- Two-dimensional simulations of coronal rain dynamics. I. Model with vertical magnetic field and an unbounded atmosphere
- Prevalence of Thermal Non-Equilibrium over an Active Region
- Multi-thermal jet formation triggered by flux emergence
- On-disk solar coronal condensations facilitated by magnetic reconnection between open and closed magnetic structures
- From Chromospheric Evaporation to Coronal Rain: An Investigation of the Mass and Energy Cycle of a Flare
- On the spectroscopic detection of periodic plasma flows in loops undergoing thermal non-equilibrium
- Temporal and Spatial Scales in Coronal Rain Revealed by UV Imaging and Spectroscopic Observations
- 3D coupled tearing-thermal evolution in solar current sheets
- APEX and NOEMA observations of HS in nearby luminous galaxies and the ULIRG Mrk~231 -- Is there a relation between dense gas properties and molecular outflows?
- Magnetic shuffling of coronal downdrafts
- H and EUV observations of a partial CME
- Simulating stellar coronal rain and slingshot prominences
- A new view of the solar interface region from the Interface Region Imaging Spectrograph (IRIS)
- Coronal rain formation in a two-fluid approximation