Particle Acceleration in Collapsing Magnetic Traps with a Braking Plasma Jet
arXiv:1605.06343 · doi:10.1007/s11207-016-0915-0
Abstract
Collapsing magnetic traps (CMTs) are one proposed mechanism for generating non-thermal particle populations in solar flares. CMTs occur if an initially stretched magnetic field structure relaxes rapidly into a lower-energy configuration, which is believed to happen as a by-product of magnetic reconnection. A similar mechanism for energising particles has also been found to operate in the Earth's magnetotail. One particular feature proposed to be of importance for particle acceleration in the magnetotail is that of a braking plasma jet, i.e. a localised region of strong flow encountering stronger magnetic field which causes the jet to slow down and stop. Such a feature has not been included in previously proposed analytical models of CMTs for solar flares. In this work we incorporate a braking plasma jet into a well studied CMT model for the first time. We present results of test particle calculations in this new CMT model. We observe and characterise new types of particle behaviour caused by the magnetic structure of the jet braking region, which allows electrons to be trapped both in the braking jet region and the loop legs. We compare and contrast the behaviour of particle orbits for various parameter regimes of the underlying trap by examining particle trajectories, energy gains and the frequency with which different types of particle orbit are found for each parameter regime.
23 pages, 12 figures, published in Solar Physics. Minor typo in appendix corrected in version 2
References in corpus (6)
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- Particle acceleration at a reconnecting magnetic separator
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- Flare particle acceleration in the interaction of twisted coronal flux ropes
- Comparative study of electric currents and energetic particle fluxes in a solar flare and Earth magnetospheric substorm
- Particle acceleration with anomalous pitch angle scattering in 2D MHD reconnection simulations
- Particle acceleration with anomalous pitch angle scattering in 3D separator reconnection
- In situ evidence of ion acceleration between consecutive reconnection jet fronts
- Transport of electrons in tangled magnetic fields
- Numerical Investigation of Efficient Electron Acceleration at an Unsteady Solar Flare Loop-Top