Radiative turbulent flares in magnetically-dominated plasmas
arXiv:2012.03043 · doi:10.3847/1538-4357/ac1c76
Abstract
We perform 2D and 3D kinetic simulations of reconnection-mediated turbulent flares in a magnetized electron-positron plasma, with weak and strong radiative cooling. Such flares can be generated around neutron stars and accreting black holes. We focus on the magnetically-dominated regime where tension of the background magnetic field lines exceeds the plasma rest mass by a factor . In the simulations, turbulence is excited on a macroscopic scale , and we observe that it develops by forming thin, dynamic current sheets on various scales. The deposited macroscopic energy dissipates by energizing thermal and nonthermal particles. The particle energy distribution is shaped by impulsive acceleration in reconnecting current sheets, gradual stochastic acceleration, and radiative losses. We parameterize radiative cooling by the ratio of light-crossing time to a cooling timescale, and study the effect of increasing on the flare. When radiative losses are sufficiently weak, , the produced emission is dominated by stochastically accelerated particles, and the radiative power depends logarithmically on . The resulting flare radiation spectrum is broad and anisotropic. In the strong-cooling regime, , stochastic acceleration is suppressed while impulsive acceleration in the current sheets continues to operate. As increases further, the emission becomes dominated by thermal particles. Our simulations offer a new tool to study particle acceleration by turbulence, especially at high energies, where cooling competes with acceleration. We find that the particle distribution is influenced by strong intermittency of dissipation, and stochastic acceleration cannot be described by a universal diffusion coefficient.
22 pages, 17 figures. Accepted to ApJ
References in corpus (5)
- The Statistics of Supersonic Isothermal Turbulence
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- Kinetic turbulence in relativistic plasma: from thermal bath to non-thermal continuum
- Powerlaw spectra from stochastic acceleration
- On the magnetisation and the radiative efficiency of BL Lac jets
Cited by in corpus (6)
- Weak Alfvénic turbulence in relativistic plasmas II: Current sheets and dissipation
- Turbulence and particle acceleration in a relativistic plasma
- A fully-kinetic model for orphan gamma-ray flares in blazars
- Synchrotron-Self-Compton radiation from magnetically-dominated turbulent plasmas in relativistic jets
- Generalized entropy production in collisionless plasma flows and turbulence
- Pair-Regulated Klein-Nishina Relativistic Magnetic Reconnection with Applications to Blazars and Accreting Black Holes