Weak Alfvénic turbulence in relativistic plasmas II: Current sheets and dissipation
arXiv:2105.01145 · doi:10.1017/S0022377821000957
Abstract
Alfvén waves as excited in black hole accretion disks and neutron star magnetospheres are the building blocks of turbulence in relativistic, magnetized plasmas. A large reservoir of magnetic energy is available in these systems, such that the plasma can be heated significantly even in the weak turbulence regime. We perform high-resolution three-dimensional simulations of counter-propagating Alfvén waves, showing that an energy spectrum develops as a result of the weak turbulence cascade in relativistic magnetohydrodynamics and its infinitely magnetized (force-free) limit. The plasma turbulence ubiquitously generates current sheets, which act as locations where magnetic energy dissipates. We show that current sheets form as a natural result of nonlinear interactions between counter-propagating Alfvén waves. These current sheets form due to the compression of elongated eddies, driven by the shear induced by growing higher order modes, and undergo a thinning process until they break-up into small-scale turbulent structures. We explore the formation of {current sheets} both in overlapping waves and in localized wave packet collisions. The relativistic interaction of localized Alfvén waves induces both Alfvén waves and fast waves and efficiently mediates the conversion and dissipation of electromagnetic energy in astrophysical systems. Plasma energization through reconnection in current sheets emerging during the interaction of Alfvén waves can potentially explain X-ray emission in black hole accretion coronae and neutron star magnetospheres.
Accepted in JPP, accompanied by Paper I: Weak Alfvénic turbulence in relativistic plasmas I: dynamical equations and basic dynamics of interacting resonant triads
References in corpus (8)
- Accurate Simulations of Binary Black-Hole Mergers in Force-Free Electrodynamics
- Tearing instability in relativistic magnetically dominated plasmas
- Plasmoid ejection by Alfvén waves and the fast radio bursts from SGR 1935+2154
- The Dynamical Generation of Current Sheets in Astrophysical Plasma Turbulence
- Dynamic alignment and plasmoid formation in relativistic magnetohydrodynamic turbulence
- Three-dimensional magnetic reconnection in particle-in-cell simulations of anisotropic plasma turbulence
- Strong Coupling of Alfvén and Fast Modes in Compressible Relativistic Magnetohydrodynamic Turbulence in Magnetically-Dominated Plasmas
- Fast dissipation of Colliding Alfvén Waves in a Magnetically Dominated Plasma
Cited by in corpus (18)
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- Three-dimensional dynamics of strongly twisted magnetar magnetospheres: Kinking flux tubes and global eruptions
- Reconnection-powered fast radio transients from coalescing neutron star binaries
- Electromagnetic precursor flares from the late inspiral of neutron star binaries
- Weak Alfvénic turbulence in relativistic plasmas. Part 1. Dynamical equations and basic dynamics of interacting resonant triads
- Radiative plasma simulations of black hole accretion flow coronae in the hard and soft states
- Direct Emission of Strong Radio Pulses During Magnetar Flares
- Turbulent regimes in collisions of 3D Alfvén-wave packets
- Kinetic Simulations of Imbalanced Turbulence in a Relativistic Plasma: Net Flow and Particle Acceleration
- Comparison of magnetic diffusion and reconnection in ideal and resistive relativistic magnetohydrodynamics, ideal magnetodynamics, and resistive force-free electrodynamics
- Force-free wave interaction in magnetar magnetospheres: Computational modeling in axisymmetry
- Nonlinear Alfvén-wave Dynamics and Premerger Emission from Crustal Oscillations in Neutron Star Mergers
- Exact nonlinear solutions for three-dimensional Alfvén-wave packets in relativistic magnetohydrodynamics
- Scale Statistics of Current Sheets in Relativistic Collisionless Plasma Turbulence
- Safety first: Stability and dissipation of line-tied force-free flux tubes in magnetized coronae
- Machine-Learning Characterization of Intermittency in Relativistic Pair Plasma Turbulence: Single and Double Sheet Structures
- Heating of Magnetically Dominated Plasma by Alfvén-Wave Turbulence