Electron acceleration by cascading reconnection in the solar corona I Magnetic gradient and curvature effects
arXiv:1504.06486 · doi:10.1088/0004-637X/815/1/6
Abstract
Aims: We investigate the electron acceleration in convective electric fields of cascading magnetic reconnection in a flaring solar corona and show the resulting hard X-ray (HXR) radiation spectra caused by Bremsstrahlung for the coronal source. Methods: We perform test particle calculation of electron motions in the framework of a guiding center approximation. The electromagnetic fields and their derivatives along electron trajectories are obtained by linearly interpolating the results of high-resolution adaptive mesh refinement (AMR) MHD simulations of cascading magnetic reconnection. Hard X-ray (HXR) spectra are calculated using an optically thin Bremsstrahlung model. Results: Magnetic gradients and curvatures in cascading reconnection current sheet accelerate electrons: trapped in magnetic islands, precipitating to the chromosphere and ejected into the interplanetary space. The final location of an electron is determined by its initial position, pitch angle and velocity. These initial conditions also influence electron acceleration efficiency. Most of electrons have enhanced perpendicular energy. Trapped electrons are considered to cause the observed bright spots along coronal mass ejection CME-trailing current sheets as well as the flare loop-top HXR emissions.
submitted to A&A
References in corpus (6)
- Instability of current sheets and formation of plasmoid chains
- Formation of Hard Power-laws in the Energetic Particle Spectra Resulting from Relativistic Magnetic Reconnection
- The Mechanisms of Electron Heating and Acceleration during Magnetic Reconnection
- Nonthermally Dominated Electron Acceleration during Magnetic Reconnection in a Low-beta Plasma
- A Systematic Examination of Particle Motion in a Collapsing Magnetic Trap Model for Solar Flares
- Onset of Electron Acceleration in a Flare Loop
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- The roles of fluid compression and shear in electron energization during magnetic reconnection
- Large-scale Compression Acceleration during Magnetic Reconnection in a Low- Plasma
- The Acceleration of Charged Particles and Formation of Power-law Energy Spectra in Nonrelativistic Magnetic Reconnection
- Reconnection and particle acceleration in interacting flux ropes -- II. 3D effects on test particles in magnetically dominated plasmas
- Reconnection and particle acceleration in interacting flux ropes I. Magnetohydrodynamics and test particles in 2.5D
- Numerical Modeling of Energetic Electron Acceleration, Transport, and Emission in Solar Flares: Connecting Loop-top and Footpoint Hard X-Ray Sources
- Non-Maxwellian electron distribution functions due to self-generated turbulence in collisionless guide-field reconnection
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- Wave excitation by energetic ring-distributed electron beams in the solar corona
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- Two-stage electron acceleration by 3D collisionless guide field magnetic reconnection
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- Magnetic Island Merging: Two-dimensional MHD Simulation and Test-Particle Modeling
- The effects of density inhomogeneities on the radio wave emission in electron beam plasmas
- Particle acceleration with anomalous pitch angle scattering in 3D separator reconnection
- Wave emission of non-thermal electron beams generated by magnetic reconnection
- Electron acceleration by turbulent plasmoid reconnection
- Preferential acceleration of heavy ions in magnetic reconnection: Hybrid-kinetic simulations with electron inertia
- Nonthermal electron acceleration in turbulent post-flare coronal loops
- Numerical Investigation of Efficient Electron Acceleration at an Unsteady Solar Flare Loop-Top