Turbulent dynamo in a collisionless plasma
arXiv:1512.06455 · doi:10.1073/pnas.1525194113
Abstract
Magnetic fields pervade the entire Universe and affect the formation and evolution of astrophysical systems from cosmological to planetary scales. The generation and dynamical amplification of extragalactic magnetic fields through cosmic times, up to Gauss levels reported in nearby galaxy clusters, near equipartition with kinetic energy of plasma motions and on scales of at least tens of kiloparsecs, is a major puzzle largely unconstrained by observations. A dynamo effect converting kinetic flow energy into magnetic energy is often invoked in that context, however extragalactic plasmas are weakly collisional (as opposed to magnetohydrodynamic fluids), and whether magnetic-field growth and sustainment through an efficient turbulent dynamo instability is possible in such plasmas is not established. Fully kinetic numerical simulations of the Vlasov equation in a six-dimensional phase space necessary to answer this question have until recently remained beyond computational capabilities. Here, we show by means of such simulations that magnetic-field amplification via a dynamo instability does occur in a stochastically-driven, non-relativistic subsonic flow of initially unmagnetized collisionless plasma. We also find that the dynamo self-accelerates and becomes entangled with kinetic instabilities as magnetization increases. The results suggest that such a plasma dynamo may be realizable in laboratory experiments, support the idea that intracluster medium (ICM) turbulence may have significantly contributed to the amplification of cluster magnetic fields up to near-equipartition levels on a timescale shorter than the Hubble time, and emphasize the crucial role of multiscale kinetic physics in high-energy astrophysical plasmas.
revised version published in PNAS (doi: 10.1073/pnas.1525194113). Author's version pre-journal final editing, 4 pages, 4 figures, 2 movies (url links in manuscript)
References in corpus (9)
- Turbulence and Magnetic Fields in the Large Scale Structure of the Universe
- Generation of magnetic field by dynamo action in a turbulent flow of liquid sodium
- On the Origin of Cosmic Magnetic Fields
- On the amplification of magnetic fields in cosmic filaments and galaxy clusters
- Nonlinear growth of firehose and mirror fluctuations in turbulent galaxy-cluster plasmas
- Electron Heating by the Ion Cyclotron Instability in Collisionless Accretion Flows. I. Compression-Driven Instabilities and the Electron Heating Mechanism
- Self-similar energetics in large clusters of galaxies
- The Wisconsin Plasma Astrophysics Laboratory
- Nonlinear mirror instability
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