The Origin of Underdense Plasma Downflows Associated with Magnetic Reconnection in Solar Flares
arXiv:2111.11407 · doi:10.1038/s41550-021-01570-2
Abstract
Magnetic reconnection is a universal process that powers explosive energy release events such as solar flares, geomagnetic substorms, and some astrophysical jets. A characteristic feature of magnetic reconnection is the production of fast reconnection outflow jets near the plasma Alfvén speeds. In eruptive solar flares, dark, finger-shaped plasma downflows moving toward the flare arcade have been commonly regarded as the principal observational evidence for such reconnection-driven outflows. However, they often show a speed much slower than that expected in reconnection theories, challenging the reconnection-driven energy release scenario in standard flare models. Here, we present a three-dimensional magnetohydrodynamics model of solar flares. By comparing the model-predictions with the observed plasma downflow features, we conclude that these dark downflows are self-organized structures formed in a turbulent interface region below the flare termination shock where the outflows meet the flare arcade, a phenomenon analogous to the formation of similar structures in supernova remnants. This interface region hosts a myriad of turbulent flows, electron currents, and shocks, crucial for flare energy release and particle acceleration.
References in corpus (14)
- Athena: A New Code for Astrophysical MHD
- Instability of current sheets and formation of plasmoid chains
- Highly Efficient Modeling of Dynamic Coronal Loops
- CHIANTI - an atomic database for emission lines - Paper XV: Version 9, improvements for the X-ray satellite lines
- 3D Turbulent Reconnection: Theory, Tests and Astrophysical Implications
- Measurement of magnetic field and relativistic electrons along a solar flare current sheet
- A Review of the 0.1 Reconnection Rate Problem
- Magnetohydrodynamic shocks in and above post-flare loops: two-dimensional simulation and a simplified model
- Magnetic Reconnection During the Post-Impulsive Phase of a Long-Duration Solar Flare: Bi-Directional Outflows as a Cause of Microwave and X-ray Bursts
- Hot Plasma Flows and Oscillations in the Loop-top Region During the September 10 2017 X8.2 Solar Flare
- An exploration of heating mechanisms in a supra-arcade plasma sheet formed after a coronal mass ejection
- Plasma Heating Induced by Tadpole-Like Downflows in the Flaring Solar Corona
- Secondary Rayleigh-Taylor type Instabilities in the Reconnection Exhaust Jet as a Mechanism for Supra-Arcade Downflows
- Fast Magnetic Reconnection with Turbulence in High Lundquist Number Limit
Cited by in corpus (25)
- Defining the Middle Corona
- MHD turbulence formation in solar flares: 3D simulation and synthetic observations
- Modeling Electron Acceleration and Transport in the Early Impulsive Phase of the 2017 September 10 Solar Flare
- Numerical Modeling of Energetic Electron Acceleration, Transport, and Emission in Solar Flares: Connecting Loop-top and Footpoint Hard X-Ray Sources
- Three-dimensional Turbulent Reconnection within Solar Flare Current Sheet
- Numerical Study on Excitation of Turbulence and Oscillation in Above-the-loop-top Region of a Solar Flare
- Current-sheet Oscillations Caused by Kelvin-Helmholtz Instability at the Loop Top of Solar Flares
- Alfvén Waves in Solar Flares
- Spectroscopic and Imaging Observations of Spatially Extended Magnetic Reconnection in the Splitting of a Solar Filament Structure
- Filament Leg--Leg Reconnection as a Source of Prominent Supra-Arcade Downflows
- Effects of supra-arcade downflows interacting with the post-flare arcade
- Statistical Investigation of the Kinematic and Thermal Properties of Supra-arcade Downflows Observed During a Solar Flare
- Multi-point study of the energy release and impulsive CME dynamics in an eruptive C7 flare
- Compression Acceleration of Protons and Heavier Ions at the Heliospheric Current Sheet
- Statistical Investigation of the Widths of Supra-arcade Downflows Observed During a Solar Flare
- Numerical MHD simulations of solar flares and their associated small-scale structures
- Magnetic Energy Powers the Corona: How We Can Understand its 3D Storage & Release
- Nonthermal electron acceleration in turbulent post-flare coronal loops
- Evidence of Extreme Ultraviolet Resonant Excitation in the Middle Corona During A Solar Flare
- Imaging and Spectroscopic Observations of the Dynamic Processes in Limb Solar Flares
- Systematic 2.5 D resistive MHD simulations with ambipolar diffusion and Hall effect for fast magnetic reconnection
- Vortex-magnetic competition and regime transitions in antiparallel flux tubes
- The Yin-Yang Magnetic Flux Eruption (Yin-Yang-MFE) Code: A Global Corona Magnetohydrodynamic Code with the Yin-Yang grid
- Numerical Investigation of Efficient Electron Acceleration at an Unsteady Solar Flare Loop-Top
- SADCat: A Catalog of Supra-Arcade Downflow Events in Solar Flares