Generation of Alfven Waves by Magnetic Reconnection
arXiv:1002.1360 · doi:10.1093/pasj/62.4.993
Abstract
In this paper, results of 2.5-dimensional magnetohydrodynamical simulations are reported for the magnetic reconnection of non-perfectly antiparallel magnetic fields. The magnetic field has a component perpendicular to the computational plane, that is, guide field. The angle theta between magnetic field lines in two half regions is a key parameter in our simulations whereas the initial distribution of the plasma is assumed to be simple; density and pressure are uniform except for the current sheet region. Alfven waves are generated at the reconnection point and propagate along the reconnected field line. The energy fluxes of the Alfven waves and magneto-acoustic waves (slow mode and fast mode) generated by the magnetic reconnection are measured. Each flux shows the similar time evolution independent of theta. The percentage of the energies (time integral of energy fluxes) carried by the Alfven waves and magneto-acoustic waves to the released magnetic energy are calculated. The Alfven waves carry 38.9%, 36.0%, and 29.5% of the released magnetic energy at the maximum (theta=80^\circ) in the case of beta=0.1, 1, and 20 respectively, where beta is the plasma beta (the ratio of gas pressure to magnetic pressure). The magneto-acoustic waves carry 16.2% (theta=70^\circ), 25.9% (theta=60^\circ), and 75.0% (theta=180^\circ) of the energy at the maximum. Implications of these results for solar coronal heating and acceleration of high-speed solar wind are discussed.
Accepted for publication in PASJ. 24 pages, 11 figures
References in corpus (5)
- Alfven Waves in the Lower Solar Atmosphere
- Chromospheric Anemone Jets as Evidence of Ubiquitous Reconnection
- Convectively driven vortex flows in the Sun
- An Intriguing Chromospheric Jet Observed by Hinode: I. Fine Structure Kinematics and Evidence of Unwinding Twists
- The role of torsional Alfven waves in coronal heating
Cited by in corpus (30)
- The FIP and Inverse FIP Effects in Solar and Stellar Coronae
- Propagation of Alfvénic Waves From Corona to Chromosphere and Consequences for Solar Flares
- Ionized Plasma and Neutral Gas Coupling in the Sun's Chromosphere and Earth's Ionosphere/Thermosphere
- Alfvénic Wave Heating of the Upper Chromosphere in Flares
- Damping of Alfven waves by Turbulence and its Consequences: from Cosmic-Rays Streaming to Launching Winds
- Magnetohydrodynamic shocks in and above post-flare loops: two-dimensional simulation and a simplified model
- Numerical Simulations of Solar Chromospheric Jets Associated with Emerging Flux
- Switchbacks: statistical properties and deviations from alfvénicity
- The First Ionization Potential Effect from the Ponderomotive Force: On the Polarization and Coronal Origin of the Alfven Waves
- A Hydrodynamic Model of Alfvénic Wave Heating in a Coronal Loop and its Chromospheric Footpoints
- The FIP and Inverse FIP Effects in Solar Flares
- Low-frequency Alfven Waves Produced by Magnetic Reconnection in the Sun's Magnetic Carpet
- Ponderomotive Acceleration in Coronal Loops
- On the Origin of the Slow Speed Solar Wind: Helium Abundance Variations
- Electron Beams Cannot Directly Produce Coronal Rain
- Large-amplitude prominence oscillations following the impact by a coronal jet
- Pulse-driven nonlinear Alfvén waves and their role in the spectral line broadening
- Can Sub-photospheric Magnetic Reconnection Change the Elemental Composition in the Solar Corona?
- Numerical Study on Excitation of Turbulence and Oscillation in Above-the-loop-top Region of a Solar Flare
- Plasma compression in magnetic reconnection regions in the solar corona
- The Coronal Abundances of Mid-F Dwarfs
- Simulated Magnetic Flows in the Solar Photosphere
- Competition between shock and turbulent heating in coronal loop system
- A Laboratory Experiment of Magnetic Reconnection: Outflows, Heating and Waves in Chromospheric Jets
- Highly efficient energy-conserving moment method for the multi-dimensional Vlasov-Maxwell system
- The effects of driving time scales on coronal heating in a stratified atmosphere
- Reflection of fast magnetosonic waves near magnetic reconnection region
- Numerical simulation of solar photospheric jet-like phenomena caused by magnetic reconnection
- Element Abundances in Impulsive Solar Energetic Particle Events
- Modelling the interaction of Alfvénic fluctuations with coronal mass ejections in the low solar corona