Time-dependent Turbulent Electron Acceleration and Transport in Solar Flares
arXiv:2511.19106 · doi:10.3847/1538-4357/ae0cc3
Abstract
Solar flares are explosive releases of magnetic energy stored in the solar corona, driven by magnetic reconnection. These events accelerate electrons, generating hard X-ray emissions and often display Quasi Periodic Pulsations (QPPs) across the energy spectra. However, the energy transfer process remains poorly constrained, with competing theories proposing different acceleration mechanisms. We investigate electron acceleration and transport in a flaring coronal loop by solving a time-dependent Fokker-Planck equation. Our model incorporates transient turbulent acceleration, simulating the effects of impulsive energy input to emulate the dynamics of time-dependent reconnection processes. We compute the density-weighted electron flux, a diagnostic directly comparable to observed X-ray emissions, across the energy and spatial domains from the corona to the chromosphere. We investigate different time-dependent functional forms of the turbulent acceleration, finding that the functional form of the acceleration source maintains its signature across energy bands (1 to 100 keV) with a response time that is energy dependent (with higher energy bands displaying a longer response time). In addition, we find that (a) for a square pulse the switch on and off response time is different; (b) for a sinusoidal input the periodicity is preserved; and (c) for a damped sinusoidal the decay rate increases with density and higher energy bands lose energy faster. This work presents a novel methodology for analyzing electron acceleration and transport in flares driven by time-dependent sources.
References in corpus (20)
- Array Programming with NumPy
- Fokker-Planck and Quasilinear Codes
- Acceleration and propagation of Solar Energetic Particles
- Nonlinear Fast Magnetoacoustic Wave Propagation in the Neighbourhood of a 2D magnetic X-point: Oscillatory Reconnection
- Magnetic reconnection as a driver for a sub-ion scale cascade in plasma turbulence
- Relations between concurrent hard X-ray sources in solar flares
- Soft X-ray Pulsations in Solar Flares
- Quasi-Periodic Pulsations during the Impulsive and Decay phases of an X-class Flare
- Spectral Hardening of Large Solar Flares
- On the variation of solar flare coronal x-ray source sizes with energy
- Detection and Interpretation Of Long-Lived X-Ray Quasi-Periodic Pulsations in the X-Class Solar Flare On 2013 May 14
- A Compact Source for Quasi-Periodic Pulsation in an M-class Solar Flare
- Understanding breaks in solar flares x-ray spectra: Evaluation of a co-spatial return-current model
- The Spatial and Temporal Variations of Turbulence in a Solar Flare
- Localising pulsations in the hard X-ray and microwave emission of an X-class flare
- Exploring the origin of multi-periodic pulsations during a white-light flare
- Spectral and Imaging Diagnostics of Spatially-Extended Turbulent Electron Acceleration and Transport in Solar Flares
- Unveiling Spatiotemporal Properties of the Quasi-periodic Pulsations in the Balmer Continuum at 3600 Å in an X-class Solar White-light Flare
- The effects of resistivity on oscillatory reconnection and consequences for solar flare Quasi Periodic Pulsations
- Self-similar solutions of oscillatory reconnection: parameter study of magnetic field strength and background temperature