Compression Acceleration of Protons and Heavier Ions at the Heliospheric Current Sheet
arXiv:2408.10445 · doi:10.3847/1538-4357/ad6e80
Abstract
Recent observations by Parker Solar Probe (PSP) suggest that protons and heavier ions are accelerated to high energies by magnetic reconnection at the heliospheric current sheet (HCS). By solving the energetic particle transport equation in large-scale MHD simulations, we study the compression acceleration of protons and heavier ions in the reconnecting HCS. We find that the acceleration of multi-species ions results in nonthermal power-law distributions with spectral index consistent with the PSP observations. Our study shows that the high-energy cutoff of protons can reach - MeV depending on the particle diffusion coefficients. We also study how the high-energy cutoff of different ion species scales with the charge-to-mass ratio . When determining the diffusion coefficients from the quasilinear theory with a Kolmogorov magnetic power spectrum, we find that , which is somewhat smaller than observed by PSP.
15 pages, 6 figures. Accepted by ApJ
References in corpus (13)
- Athena: A New Code for Astrophysical MHD
- Formation of Hard Power-laws in the Energetic Particle Spectra Resulting from Relativistic Magnetic Reconnection
- Electron Acceleration during Macroscale Magnetic Reconnection
- An Algorithm for Radiation Magnetohydrodynamics Based on Solving the Time-dependent Transfer Equation
- Spectral Slope Variation at Proton Scales from Fast to Slow Solar Wind
- The Origin of Underdense Plasma Downflows Associated with Magnetic Reconnection in Solar Flares
- The Acceleration and Confinement of Energetic Electrons by a Termination Shock in a Magnetic Trap: An Explanation for Nonthermal Loop-top Sources during Solar Flares
- Particle Injection and Nonthermal Particle Acceleration in Relativistic Magnetic Reconnection
- Modeling Electron Acceleration and Transport in the Early Impulsive Phase of the 2017 September 10 Solar Flare
- Numerical Modeling of Energetic Electron Acceleration, Transport, and Emission in Solar Flares: Connecting Loop-top and Footpoint Hard X-Ray Sources
- Sharp changes of solar wind ion flux and density within and outside current sheets
- Double-power-law feature of energetic particles accelerated at coronal shocks
- Particle Acceleration in Magnetic Reconnection with Ad hoc Pitch-angle Scattering