Test particle energization and the anisotropic effects of dynamical MHD turbulence
arXiv:1704.02642 · doi:10.3847/1538-4357/aa8c02
Abstract
In this paper we analyze the effect of dynamical three-dimensional MHD turbulence on test particle acceleration, and compare how this evolving system affects particle energization by current sheets interaction, against frozen-in-time fields. To do this we analize the ensamble particle acceleration for static electromagnetic fields extracted from direct numerical simulations of the MHD equations, and compare with the dynamical fields. We show that a reduction in particle acceleration in the dynamical model results from the particle trapping in the field lines, which forces the particles to remain in a moving current sheet that suppress the longer exposure at the strong electric field gradients located between structures, which is an efficient particle acceleration mechanism. In addition, we analize the effect of anisotropy caused by the mean magnetic field. It is well known that for sufficiently strong external fields, the system suffers a transition towards a two-dimensional flow. This causes an increment in the size of the coherent structures, resulting in a magnetized state of the particles and the reduction of the particle energization.
13 pages,7 figures
References in corpus (8)
- 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
- Charged particle diffusion in isotropic random magnetic fields
- Cosmic-ray pitch-angle scattering in imbalanced MHD turbulence simulations
- On the compressibility effect in test particle acceleration by magnetohydrodynamic turbulence
- Tridimensional to bidimensional transition in magnetohydrodynamic turbulence with a guide field and kinetic helicity injection
- Acceleration of Particles in Imbalanced Magnetohydrodynamic Turbulence
Cited by in corpus (11)
- The interplay of magnetically-dominated turbulence and magnetic reconnection in producing nonthermal particles
- First Multimessenger Observations of a Neutron Star Merger
- Model comparison from LIGO-Virgo data on GW170817's binary components and consequences for the merger remnant
- Ion and Electron Acceleration in Fully Kinetic Plasma Turbulence
- The impact of the crust equation of state on the analysis of GW170817
- Turbulent electromagnetic fields at sub-proton scales: two-fluid and full-kinetic plasma simulations
- Turbulence and particle energization in twisted flux ropes in solar-wind conditions
- Test particle energization of heavy ions in magnetohydrodynamic turbulence
- The key factor to determine the relation between radius and tidal deformability of neutron stars: slope of symmetry energy
- Effect of the electronic pressure on the energy and magnetic moment of charged test particles in turbulent electromagnetic fields
- Diagnosing Turbulence in the Neutral and Molecular Interstellar Medium of Galaxies