System-size convergence of nonthermal particle acceleration in relativistic plasma turbulence
arXiv:1805.08754 · doi:10.3847/2041-8213/aae88c
Abstract
We apply collisionless particle-in-cell simulations of relativistic pair plasmas to explore whether driven turbulence is a viable high-energy astrophysical particle accelerator. We characterize nonthermal particle distributions for varying system sizes up to , where is the driving scale and is the initial characteristic Larmor radius. We show that turbulent particle acceleration produces power-law energy distributions that, when compared at a fixed number of large-scale dynamical times, slowly steepen with increasing system size. We demonstrate, however, that convergence is obtained by comparing the distributions at different times that increase with system size (approximately logarithmically). We suggest that the system-size dependence arises from the time required for particles to reach the highest accessible energies via Fermi acceleration. The converged power-law index of the energy distribution, for magnetization , makes turbulence a possible explanation for nonthermal spectra observed in systems such as the Crab nebula.
7 pages, 4 figures, submitted to Astrophysical Journal Letters
References in corpus (5)
- On the Momentum Diffusion of Radiating Ultrarelativistic Electrons in a Turbulent Magnetic Field
- Kinetic turbulence in relativistic plasma: from thermal bath to non-thermal continuum
- Fractional Transport in Strongly Turbulent Plasmas
- Numerical investigation of kinetic turbulence in relativistic pair plasmas I: Turbulence statistics
- Stochastic Electron Acceleration by the Whistler Instability in a Growing Magnetic Field
Cited by in corpus (47)
- Particle Acceleration in Relativistic Plasma Turbulence
- The interplay of magnetically-dominated turbulence and magnetic reconnection in producing nonthermal particles
- Electron and ion energization in relativistic plasma turbulence
- First-principles demonstration of diffusive-advective particle acceleration in kinetic simulations of relativistic plasma turbulence
- Ion and Electron Acceleration in Fully Kinetic Plasma Turbulence
- Particle acceleration in strong MHD turbulence
- Particle acceleration in relativistic turbulence: A theoretical appraisal
- Kink instability: evolution and energy dissipation in Relativistic Force-Free Non-Rotating Jets
- Pitch Angle Anisotropy Controls Particle Acceleration and Cooling in Radiative Relativistic Plasma Turbulence
- Kinetic turbulence in shining pair plasma: intermittent beaming and thermalization by radiative cooling
- Radiative Particle-in-Cell Simulations of Turbulent Comptonization in Magnetized Black-Hole Coronae
- Hard Synchrotron Spectra from Magnetically Dominated Plasma Turbulence
- Production and persistence of extreme two-temperature plasmas in radiative relativistic turbulence
- Non-resonant particle acceleration in strong turbulence: comparison to kinetic and MHD simulations
- A global model of particle acceleration at pulsar wind termination shocks
- Powerlaw spectra from stochastic acceleration
- Relativistic Nonthermal Particle Acceleration in Two-Dimensional Collisionless Magnetic Reconnection
- Particle Energy Diffusion in Linear Magnetohydrodynamic Waves
- Nonlinear aspects of stochastic particle acceleration
- Magnetically Arrested Disks in Quiescent Black-Hole Binaries: Formation Scenario, Observable Signatures, and Potential PeVatrons
- Turbulence and particle acceleration in a relativistic plasma
- Synchrotron-Self-Compton radiation from magnetically-dominated turbulent plasmas in relativistic jets
- Blazars at Very High Energies: Emission Modelling
- A fully-kinetic model for orphan gamma-ray flares in blazars
- Rapid Particle Acceleration due to Recollimation Shocks and Turbulent Magnetic Fields in Injected Jets with Helical Magnetic Fields
- Ultra-High-Energy Cosmic Rays Accelerated by Magnetically Dominated Turbulence
- Relativistic Collisionless Shocks in Inhomogeneous Magnetized Plasmas
- Interaction of a Relativistic Magnetized Collisionless Shock with a Dense Clump
- Spectra of magnetic turbulence in a relativistic plasma
- Kinetic Simulations of Imbalanced Turbulence in a Relativistic Plasma: Net Flow and Particle Acceleration
- Spatial intermittency of particle distribution in relativistic plasma turbulence
- 3D PIC Simulations for Relativistic Jets with a Toroidal Magnetic Field
- High-energy Gamma-rays from Magnetically Arrested Disks in Nearby Radio Galaxies
- Radiative turbulent flares in magnetically-dominated plasmas
- Leaking Outside the Box: Kinetic Turbulence with Cosmic-Ray Escape
- Low-energy Injection and Nonthermal Particle Acceleration in Relativistic Magnetic Turbulence
- Energy Diffusion and Advection Coefficients in Kinetic Simulations of Relativistic Plasma Turbulence
- Circular polarisation in compact radio sources: Constraints on particle acceleration and electron-positron pairs
- First-principles measurement of ion and electron energization in collisionless accretion flow
- Circular polarisation from inhomogeneous synchrotron sources
- Scaling of Magnetic Dissipation and Particle Acceleration in ABC Fields
- Particle injection in three-dimensional relativistic magnetic reconnection
- On the Effect of Driving Turbulent-like Fluctuations on a Harris-Current Sheet Configuration and the Formation of Plasmoids
- Anisotropy and energy distribution of leptons and photons in radiative relativistic Alfvénic turbulence
- Magnetic Field-Line Curvature and Its Role in Particle Acceleration by Magnetically Dominated Turbulence
- Nonthermal particle acceleration from maximum entropy in collisionless plasmas
- Fully kinetic shearing-box simulations of magnetorotational turbulence in 2D and 3D. I. Pair plasmas